Measurement of the np total cross section difference $\Delta\sigma_{\mathrm L}(np)$ at 1.39, 1.69, 1.89 and 1.99 GeV
Abstract. New accurate results of the neutron-proton spin-dependent total cross section difference $\Delta\sigma_{\mathrm L}(np)$ at the neutron beam kinetic energies 1.39, 1.69, 1.89 and 1.99 GeV are presented. Measurements were carried out in 2001 at the Synchrophasotron of the Veksler and Baldin...
Ausführliche Beschreibung
Autor*in: |
Sharov, V. I. [verfasserIn] |
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Format: |
Artikel |
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Sprache: |
Englisch |
Erschienen: |
2004 |
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Schlagwörter: |
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Anmerkung: |
© Springer-Verlag Berlin/Heidelberg 2004 |
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Übergeordnetes Werk: |
Enthalten in: The European physical journal / C - Springer-Verlag, 1998, 37(2004), 1 vom: Sept., Seite 79-90 |
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Übergeordnetes Werk: |
volume:37 ; year:2004 ; number:1 ; month:09 ; pages:79-90 |
Links: |
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DOI / URN: |
10.1140/epjc/s2004-01987-9 |
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Katalog-ID: |
OLC2069082199 |
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100 | 1 | |a Sharov, V. I. |e verfasserin |4 aut | |
245 | 1 | 0 | |a Measurement of the np total cross section difference $\Delta\sigma_{\mathrm L}(np)$ at 1.39, 1.69, 1.89 and 1.99 GeV |
264 | 1 | |c 2004 | |
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337 | |a ohne Hilfsmittel zu benutzen |b n |2 rdamedia | ||
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500 | |a © Springer-Verlag Berlin/Heidelberg 2004 | ||
520 | |a Abstract. New accurate results of the neutron-proton spin-dependent total cross section difference $\Delta\sigma_{\mathrm L}(np)$ at the neutron beam kinetic energies 1.39, 1.69, 1.89 and 1.99 GeV are presented. Measurements were carried out in 2001 at the Synchrophasotron of the Veksler and Baldin Laboratory of High Energies of the Joint Institute for Nuclear Research. A quasi-monochromatic neutron beam was produced by break-up of extracted polarized deuterons. The deuteron (and hence neutron) polarization direction was flipped every accelerator burst. The vertical neutron polarization direction was rotated onto the neutron beam direction and longitudinally (L) polarized neutrons were transmitted through a large proton L-polarized target. The target polarization vector was inverted after 1-2 days of measurements. The data were recorded for four different combinations of the beam and target parallel and antiparallel polarization directions at each energy. A fast decrease of $\Delta\sigma_{\mathrm L}(np)$ with increasing energy above 1.1 GeV was confirmed. The structure in the $\Delta\sigma_{\mathrm L}(np)$ energy dependence around 1.8 GeV, first observed from our previous data, seems to be well pronounced. The new results are also compared with model predictions and with phase shift analysis fits. The $\Delta\sigma_{\mathrm L}$ quantities for isosinglet state I = 0, deduced from the measured $\Delta\sigma_{\mathrm L}(np)$ values and the known $\Delta\sigma_{\mathrm L}(pp)$ data, are also given. The results were completed by the measurements of unpolarized total cross sections $\sigma_{0\mathrm{tot}}(np)$ at 1.3, 1.4 and 1.5 GeV and $\sigma_{0\mathrm{tot}}(n$C) at 1.4 and 1.5 GeV. These data were obtained using the same apparatus and high intensity unpolarized deuteron beams were extracted either from the Synchrophasotron, or from the Nuclotron. | ||
650 | 4 | |a Polarization Direction | |
650 | 4 | |a Neutron Beam | |
650 | 4 | |a Deuteron Beam | |
650 | 4 | |a Phase Shift Analysis | |
650 | 4 | |a Target Polarization | |
700 | 1 | |a Anischenko, N. G. |4 aut | |
700 | 1 | |a Antonenko, V. G. |4 aut | |
700 | 1 | |a Averichev, S. A. |4 aut | |
700 | 1 | |a Azhgirey, L. S. |4 aut | |
700 | 1 | |a Bartenev, V. D. |4 aut | |
700 | 1 | |a Bazhanov, N. A. |4 aut | |
700 | 1 | |a Belyaev, A. A. |4 aut | |
700 | 1 | |a Blinov, N. A. |4 aut | |
700 | 1 | |a Borisov, N. S. |4 aut | |
700 | 1 | |a Borzakov, S. B. |4 aut | |
700 | 1 | |a Borzunov, Yu T. |4 aut | |
700 | 1 | |a Bushuev, Yu P. |4 aut | |
700 | 1 | |a Chernenko, L. P. |4 aut | |
700 | 1 | |a Chernykh, E. V. |4 aut | |
700 | 1 | |a Chumakov, V. F. |4 aut | |
700 | 1 | |a Dolgii, S. A. |4 aut | |
700 | 1 | |a Fedorov, A. N. |4 aut | |
700 | 1 | |a Fimushkin, V. V. |4 aut | |
700 | 1 | |a Finger, M. |4 aut | |
700 | 1 | |a Finger, M. |4 aut | |
700 | 1 | |a Golovanov, L. B. |4 aut | |
700 | 1 | |a Gurevich, G. M. |4 aut | |
700 | 1 | |a Janata, A. |4 aut | |
700 | 1 | |a Kirillov, A. D. |4 aut | |
700 | 1 | |a Kolomiets, V. G. |4 aut | |
700 | 1 | |a Komogorov, E. V. |4 aut | |
700 | 1 | |a Kovalenko, A. D. |4 aut | |
700 | 1 | |a Kovalev, A. I. |4 aut | |
700 | 1 | |a Krasnov, V. A. |4 aut | |
700 | 1 | |a Krstonoshich, P. |4 aut | |
700 | 1 | |a Kuzmin, E. S. |4 aut | |
700 | 1 | |a Ladygin, V. P. |4 aut | |
700 | 1 | |a Lazarev, A. B. |4 aut | |
700 | 1 | |a Lehar, F. |4 aut | |
700 | 1 | |a de Lesquen, A. |4 aut | |
700 | 1 | |a Liburg, M. Yu |4 aut | |
700 | 1 | |a Livanov, A. N. |4 aut | |
700 | 1 | |a Lukhanin, A. A. |4 aut | |
700 | 1 | |a Maniakov, P. K. |4 aut | |
700 | 1 | |a Matafonov, V. N. |4 aut | |
700 | 1 | |a Matyushevsky, E. A. |4 aut | |
700 | 1 | |a Moroz, V. D. |4 aut | |
700 | 1 | |a Morozov, A. A. |4 aut | |
700 | 1 | |a Neganov, A. B. |4 aut | |
700 | 1 | |a Nikolaevsky, G. P. |4 aut | |
700 | 1 | |a Nomofilov, A. A. |4 aut | |
700 | 1 | |a Panteleev, Tz |4 aut | |
700 | 1 | |a Pilipenko, Yu K. |4 aut | |
700 | 1 | |a Pisarev, I. L. |4 aut | |
700 | 1 | |a Plis, Yu A. |4 aut | |
700 | 1 | |a Polunin, Yu P. |4 aut | |
700 | 1 | |a Prokofiev, A. N. |4 aut | |
700 | 1 | |a Prytkov, V. Yu |4 aut | |
700 | 1 | |a Rukoyatkin, P. A. |4 aut | |
700 | 1 | |a Schedrov, V. A. |4 aut | |
700 | 1 | |a Schevelev, O. N. |4 aut | |
700 | 1 | |a Shilov, S. N. |4 aut | |
700 | 1 | |a Shindin, R. A. |4 aut | |
700 | 1 | |a Slunečka, M. |4 aut | |
700 | 1 | |a Slunečková, V. |4 aut | |
700 | 1 | |a Starikov, A. Yu |4 aut | |
700 | 1 | |a Stoletov, G. D. |4 aut | |
700 | 1 | |a Strunov, L. N. |4 aut | |
700 | 1 | |a Svetov, A. L. |4 aut | |
700 | 1 | |a Usov, Yu A. |4 aut | |
700 | 1 | |a Vasiliev, T. |4 aut | |
700 | 1 | |a Volkov, V. I. |4 aut | |
700 | 1 | |a Vorobiev, E. I. |4 aut | |
700 | 1 | |a Yudin, I. P. |4 aut | |
700 | 1 | |a Zaitsev, I. V. |4 aut | |
700 | 1 | |a Zhdanov, A. A. |4 aut | |
700 | 1 | |a Zhmyrov, V. N. |4 aut | |
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10.1140/epjc/s2004-01987-9 doi (DE-627)OLC2069082199 (DE-He213)s2004-01987-9-p DE-627 ger DE-627 rakwb eng 530 VZ 530 VZ Sharov, V. I. verfasserin aut Measurement of the np total cross section difference $\Delta\sigma_{\mathrm L}(np)$ at 1.39, 1.69, 1.89 and 1.99 GeV 2004 Text txt rdacontent ohne Hilfsmittel zu benutzen n rdamedia Band nc rdacarrier © Springer-Verlag Berlin/Heidelberg 2004 Abstract. New accurate results of the neutron-proton spin-dependent total cross section difference $\Delta\sigma_{\mathrm L}(np)$ at the neutron beam kinetic energies 1.39, 1.69, 1.89 and 1.99 GeV are presented. Measurements were carried out in 2001 at the Synchrophasotron of the Veksler and Baldin Laboratory of High Energies of the Joint Institute for Nuclear Research. A quasi-monochromatic neutron beam was produced by break-up of extracted polarized deuterons. The deuteron (and hence neutron) polarization direction was flipped every accelerator burst. The vertical neutron polarization direction was rotated onto the neutron beam direction and longitudinally (L) polarized neutrons were transmitted through a large proton L-polarized target. The target polarization vector was inverted after 1-2 days of measurements. The data were recorded for four different combinations of the beam and target parallel and antiparallel polarization directions at each energy. A fast decrease of $\Delta\sigma_{\mathrm L}(np)$ with increasing energy above 1.1 GeV was confirmed. The structure in the $\Delta\sigma_{\mathrm L}(np)$ energy dependence around 1.8 GeV, first observed from our previous data, seems to be well pronounced. The new results are also compared with model predictions and with phase shift analysis fits. The $\Delta\sigma_{\mathrm L}$ quantities for isosinglet state I = 0, deduced from the measured $\Delta\sigma_{\mathrm L}(np)$ values and the known $\Delta\sigma_{\mathrm L}(pp)$ data, are also given. The results were completed by the measurements of unpolarized total cross sections $\sigma_{0\mathrm{tot}}(np)$ at 1.3, 1.4 and 1.5 GeV and $\sigma_{0\mathrm{tot}}(n$C) at 1.4 and 1.5 GeV. These data were obtained using the same apparatus and high intensity unpolarized deuteron beams were extracted either from the Synchrophasotron, or from the Nuclotron. Polarization Direction Neutron Beam Deuteron Beam Phase Shift Analysis Target Polarization Anischenko, N. G. aut Antonenko, V. G. aut Averichev, S. A. aut Azhgirey, L. S. aut Bartenev, V. D. aut Bazhanov, N. A. aut Belyaev, A. A. aut Blinov, N. A. aut Borisov, N. S. aut Borzakov, S. B. aut Borzunov, Yu T. aut Bushuev, Yu P. aut Chernenko, L. P. aut Chernykh, E. V. aut Chumakov, V. F. aut Dolgii, S. A. aut Fedorov, A. N. aut Fimushkin, V. V. aut Finger, M. aut Finger, M. aut Golovanov, L. B. aut Gurevich, G. M. aut Janata, A. aut Kirillov, A. D. aut Kolomiets, V. G. aut Komogorov, E. V. aut Kovalenko, A. D. aut Kovalev, A. I. aut Krasnov, V. A. aut Krstonoshich, P. aut Kuzmin, E. S. aut Ladygin, V. P. aut Lazarev, A. B. aut Lehar, F. aut de Lesquen, A. aut Liburg, M. Yu aut Livanov, A. N. aut Lukhanin, A. A. aut Maniakov, P. K. aut Matafonov, V. N. aut Matyushevsky, E. A. aut Moroz, V. D. aut Morozov, A. A. aut Neganov, A. B. aut Nikolaevsky, G. P. aut Nomofilov, A. A. aut Panteleev, Tz aut Pilipenko, Yu K. aut Pisarev, I. L. aut Plis, Yu A. aut Polunin, Yu P. aut Prokofiev, A. N. aut Prytkov, V. Yu aut Rukoyatkin, P. A. aut Schedrov, V. A. aut Schevelev, O. N. aut Shilov, S. N. aut Shindin, R. A. aut Slunečka, M. aut Slunečková, V. aut Starikov, A. Yu aut Stoletov, G. D. aut Strunov, L. N. aut Svetov, A. L. aut Usov, Yu A. aut Vasiliev, T. aut Volkov, V. I. aut Vorobiev, E. I. aut Yudin, I. P. aut Zaitsev, I. V. aut Zhdanov, A. A. aut Zhmyrov, V. N. aut Enthalten in The European physical journal / C Springer-Verlag, 1998 37(2004), 1 vom: Sept., Seite 79-90 (DE-627)235469777 (DE-600)1397769-6 (DE-576)061879150 1434-6044 nnns volume:37 year:2004 number:1 month:09 pages:79-90 https://doi.org/10.1140/epjc/s2004-01987-9 lizenzpflichtig Volltext GBV_USEFLAG_A SYSFLAG_A GBV_OLC SSG-OLC-PHY GBV_ILN_11 GBV_ILN_20 GBV_ILN_21 GBV_ILN_22 GBV_ILN_30 GBV_ILN_40 GBV_ILN_62 GBV_ILN_70 GBV_ILN_130 GBV_ILN_267 GBV_ILN_2003 GBV_ILN_2006 GBV_ILN_2018 GBV_ILN_4029 GBV_ILN_4082 GBV_ILN_4116 GBV_ILN_4277 GBV_ILN_4305 GBV_ILN_4306 GBV_ILN_4307 GBV_ILN_4310 GBV_ILN_4317 AR 37 2004 1 09 79-90 |
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10.1140/epjc/s2004-01987-9 doi (DE-627)OLC2069082199 (DE-He213)s2004-01987-9-p DE-627 ger DE-627 rakwb eng 530 VZ 530 VZ Sharov, V. I. verfasserin aut Measurement of the np total cross section difference $\Delta\sigma_{\mathrm L}(np)$ at 1.39, 1.69, 1.89 and 1.99 GeV 2004 Text txt rdacontent ohne Hilfsmittel zu benutzen n rdamedia Band nc rdacarrier © Springer-Verlag Berlin/Heidelberg 2004 Abstract. New accurate results of the neutron-proton spin-dependent total cross section difference $\Delta\sigma_{\mathrm L}(np)$ at the neutron beam kinetic energies 1.39, 1.69, 1.89 and 1.99 GeV are presented. Measurements were carried out in 2001 at the Synchrophasotron of the Veksler and Baldin Laboratory of High Energies of the Joint Institute for Nuclear Research. A quasi-monochromatic neutron beam was produced by break-up of extracted polarized deuterons. The deuteron (and hence neutron) polarization direction was flipped every accelerator burst. The vertical neutron polarization direction was rotated onto the neutron beam direction and longitudinally (L) polarized neutrons were transmitted through a large proton L-polarized target. The target polarization vector was inverted after 1-2 days of measurements. The data were recorded for four different combinations of the beam and target parallel and antiparallel polarization directions at each energy. A fast decrease of $\Delta\sigma_{\mathrm L}(np)$ with increasing energy above 1.1 GeV was confirmed. The structure in the $\Delta\sigma_{\mathrm L}(np)$ energy dependence around 1.8 GeV, first observed from our previous data, seems to be well pronounced. The new results are also compared with model predictions and with phase shift analysis fits. The $\Delta\sigma_{\mathrm L}$ quantities for isosinglet state I = 0, deduced from the measured $\Delta\sigma_{\mathrm L}(np)$ values and the known $\Delta\sigma_{\mathrm L}(pp)$ data, are also given. The results were completed by the measurements of unpolarized total cross sections $\sigma_{0\mathrm{tot}}(np)$ at 1.3, 1.4 and 1.5 GeV and $\sigma_{0\mathrm{tot}}(n$C) at 1.4 and 1.5 GeV. These data were obtained using the same apparatus and high intensity unpolarized deuteron beams were extracted either from the Synchrophasotron, or from the Nuclotron. Polarization Direction Neutron Beam Deuteron Beam Phase Shift Analysis Target Polarization Anischenko, N. G. aut Antonenko, V. G. aut Averichev, S. A. aut Azhgirey, L. S. aut Bartenev, V. D. aut Bazhanov, N. A. aut Belyaev, A. A. aut Blinov, N. A. aut Borisov, N. S. aut Borzakov, S. B. aut Borzunov, Yu T. aut Bushuev, Yu P. aut Chernenko, L. P. aut Chernykh, E. V. aut Chumakov, V. F. aut Dolgii, S. A. aut Fedorov, A. N. aut Fimushkin, V. V. aut Finger, M. aut Finger, M. aut Golovanov, L. B. aut Gurevich, G. M. aut Janata, A. aut Kirillov, A. D. aut Kolomiets, V. G. aut Komogorov, E. V. aut Kovalenko, A. D. aut Kovalev, A. I. aut Krasnov, V. A. aut Krstonoshich, P. aut Kuzmin, E. S. aut Ladygin, V. P. aut Lazarev, A. B. aut Lehar, F. aut de Lesquen, A. aut Liburg, M. Yu aut Livanov, A. N. aut Lukhanin, A. A. aut Maniakov, P. K. aut Matafonov, V. N. aut Matyushevsky, E. A. aut Moroz, V. D. aut Morozov, A. A. aut Neganov, A. B. aut Nikolaevsky, G. P. aut Nomofilov, A. A. aut Panteleev, Tz aut Pilipenko, Yu K. aut Pisarev, I. L. aut Plis, Yu A. aut Polunin, Yu P. aut Prokofiev, A. N. aut Prytkov, V. Yu aut Rukoyatkin, P. A. aut Schedrov, V. A. aut Schevelev, O. N. aut Shilov, S. N. aut Shindin, R. A. aut Slunečka, M. aut Slunečková, V. aut Starikov, A. Yu aut Stoletov, G. D. aut Strunov, L. N. aut Svetov, A. L. aut Usov, Yu A. aut Vasiliev, T. aut Volkov, V. I. aut Vorobiev, E. I. aut Yudin, I. P. aut Zaitsev, I. V. aut Zhdanov, A. A. aut Zhmyrov, V. N. aut Enthalten in The European physical journal / C Springer-Verlag, 1998 37(2004), 1 vom: Sept., Seite 79-90 (DE-627)235469777 (DE-600)1397769-6 (DE-576)061879150 1434-6044 nnns volume:37 year:2004 number:1 month:09 pages:79-90 https://doi.org/10.1140/epjc/s2004-01987-9 lizenzpflichtig Volltext GBV_USEFLAG_A SYSFLAG_A GBV_OLC SSG-OLC-PHY GBV_ILN_11 GBV_ILN_20 GBV_ILN_21 GBV_ILN_22 GBV_ILN_30 GBV_ILN_40 GBV_ILN_62 GBV_ILN_70 GBV_ILN_130 GBV_ILN_267 GBV_ILN_2003 GBV_ILN_2006 GBV_ILN_2018 GBV_ILN_4029 GBV_ILN_4082 GBV_ILN_4116 GBV_ILN_4277 GBV_ILN_4305 GBV_ILN_4306 GBV_ILN_4307 GBV_ILN_4310 GBV_ILN_4317 AR 37 2004 1 09 79-90 |
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10.1140/epjc/s2004-01987-9 doi (DE-627)OLC2069082199 (DE-He213)s2004-01987-9-p DE-627 ger DE-627 rakwb eng 530 VZ 530 VZ Sharov, V. I. verfasserin aut Measurement of the np total cross section difference $\Delta\sigma_{\mathrm L}(np)$ at 1.39, 1.69, 1.89 and 1.99 GeV 2004 Text txt rdacontent ohne Hilfsmittel zu benutzen n rdamedia Band nc rdacarrier © Springer-Verlag Berlin/Heidelberg 2004 Abstract. New accurate results of the neutron-proton spin-dependent total cross section difference $\Delta\sigma_{\mathrm L}(np)$ at the neutron beam kinetic energies 1.39, 1.69, 1.89 and 1.99 GeV are presented. Measurements were carried out in 2001 at the Synchrophasotron of the Veksler and Baldin Laboratory of High Energies of the Joint Institute for Nuclear Research. A quasi-monochromatic neutron beam was produced by break-up of extracted polarized deuterons. The deuteron (and hence neutron) polarization direction was flipped every accelerator burst. The vertical neutron polarization direction was rotated onto the neutron beam direction and longitudinally (L) polarized neutrons were transmitted through a large proton L-polarized target. The target polarization vector was inverted after 1-2 days of measurements. The data were recorded for four different combinations of the beam and target parallel and antiparallel polarization directions at each energy. A fast decrease of $\Delta\sigma_{\mathrm L}(np)$ with increasing energy above 1.1 GeV was confirmed. The structure in the $\Delta\sigma_{\mathrm L}(np)$ energy dependence around 1.8 GeV, first observed from our previous data, seems to be well pronounced. The new results are also compared with model predictions and with phase shift analysis fits. The $\Delta\sigma_{\mathrm L}$ quantities for isosinglet state I = 0, deduced from the measured $\Delta\sigma_{\mathrm L}(np)$ values and the known $\Delta\sigma_{\mathrm L}(pp)$ data, are also given. The results were completed by the measurements of unpolarized total cross sections $\sigma_{0\mathrm{tot}}(np)$ at 1.3, 1.4 and 1.5 GeV and $\sigma_{0\mathrm{tot}}(n$C) at 1.4 and 1.5 GeV. These data were obtained using the same apparatus and high intensity unpolarized deuteron beams were extracted either from the Synchrophasotron, or from the Nuclotron. Polarization Direction Neutron Beam Deuteron Beam Phase Shift Analysis Target Polarization Anischenko, N. G. aut Antonenko, V. G. aut Averichev, S. A. aut Azhgirey, L. S. aut Bartenev, V. D. aut Bazhanov, N. A. aut Belyaev, A. A. aut Blinov, N. A. aut Borisov, N. S. aut Borzakov, S. B. aut Borzunov, Yu T. aut Bushuev, Yu P. aut Chernenko, L. P. aut Chernykh, E. V. aut Chumakov, V. F. aut Dolgii, S. A. aut Fedorov, A. N. aut Fimushkin, V. V. aut Finger, M. aut Finger, M. aut Golovanov, L. B. aut Gurevich, G. M. aut Janata, A. aut Kirillov, A. D. aut Kolomiets, V. G. aut Komogorov, E. V. aut Kovalenko, A. D. aut Kovalev, A. I. aut Krasnov, V. A. aut Krstonoshich, P. aut Kuzmin, E. S. aut Ladygin, V. P. aut Lazarev, A. B. aut Lehar, F. aut de Lesquen, A. aut Liburg, M. Yu aut Livanov, A. N. aut Lukhanin, A. A. aut Maniakov, P. K. aut Matafonov, V. N. aut Matyushevsky, E. A. aut Moroz, V. D. aut Morozov, A. A. aut Neganov, A. B. aut Nikolaevsky, G. P. aut Nomofilov, A. A. aut Panteleev, Tz aut Pilipenko, Yu K. aut Pisarev, I. L. aut Plis, Yu A. aut Polunin, Yu P. aut Prokofiev, A. N. aut Prytkov, V. Yu aut Rukoyatkin, P. A. aut Schedrov, V. A. aut Schevelev, O. N. aut Shilov, S. N. aut Shindin, R. A. aut Slunečka, M. aut Slunečková, V. aut Starikov, A. Yu aut Stoletov, G. D. aut Strunov, L. N. aut Svetov, A. L. aut Usov, Yu A. aut Vasiliev, T. aut Volkov, V. I. aut Vorobiev, E. I. aut Yudin, I. P. aut Zaitsev, I. V. aut Zhdanov, A. A. aut Zhmyrov, V. N. aut Enthalten in The European physical journal / C Springer-Verlag, 1998 37(2004), 1 vom: Sept., Seite 79-90 (DE-627)235469777 (DE-600)1397769-6 (DE-576)061879150 1434-6044 nnns volume:37 year:2004 number:1 month:09 pages:79-90 https://doi.org/10.1140/epjc/s2004-01987-9 lizenzpflichtig Volltext GBV_USEFLAG_A SYSFLAG_A GBV_OLC SSG-OLC-PHY GBV_ILN_11 GBV_ILN_20 GBV_ILN_21 GBV_ILN_22 GBV_ILN_30 GBV_ILN_40 GBV_ILN_62 GBV_ILN_70 GBV_ILN_130 GBV_ILN_267 GBV_ILN_2003 GBV_ILN_2006 GBV_ILN_2018 GBV_ILN_4029 GBV_ILN_4082 GBV_ILN_4116 GBV_ILN_4277 GBV_ILN_4305 GBV_ILN_4306 GBV_ILN_4307 GBV_ILN_4310 GBV_ILN_4317 AR 37 2004 1 09 79-90 |
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10.1140/epjc/s2004-01987-9 doi (DE-627)OLC2069082199 (DE-He213)s2004-01987-9-p DE-627 ger DE-627 rakwb eng 530 VZ 530 VZ Sharov, V. I. verfasserin aut Measurement of the np total cross section difference $\Delta\sigma_{\mathrm L}(np)$ at 1.39, 1.69, 1.89 and 1.99 GeV 2004 Text txt rdacontent ohne Hilfsmittel zu benutzen n rdamedia Band nc rdacarrier © Springer-Verlag Berlin/Heidelberg 2004 Abstract. New accurate results of the neutron-proton spin-dependent total cross section difference $\Delta\sigma_{\mathrm L}(np)$ at the neutron beam kinetic energies 1.39, 1.69, 1.89 and 1.99 GeV are presented. Measurements were carried out in 2001 at the Synchrophasotron of the Veksler and Baldin Laboratory of High Energies of the Joint Institute for Nuclear Research. A quasi-monochromatic neutron beam was produced by break-up of extracted polarized deuterons. The deuteron (and hence neutron) polarization direction was flipped every accelerator burst. The vertical neutron polarization direction was rotated onto the neutron beam direction and longitudinally (L) polarized neutrons were transmitted through a large proton L-polarized target. The target polarization vector was inverted after 1-2 days of measurements. The data were recorded for four different combinations of the beam and target parallel and antiparallel polarization directions at each energy. A fast decrease of $\Delta\sigma_{\mathrm L}(np)$ with increasing energy above 1.1 GeV was confirmed. The structure in the $\Delta\sigma_{\mathrm L}(np)$ energy dependence around 1.8 GeV, first observed from our previous data, seems to be well pronounced. The new results are also compared with model predictions and with phase shift analysis fits. The $\Delta\sigma_{\mathrm L}$ quantities for isosinglet state I = 0, deduced from the measured $\Delta\sigma_{\mathrm L}(np)$ values and the known $\Delta\sigma_{\mathrm L}(pp)$ data, are also given. The results were completed by the measurements of unpolarized total cross sections $\sigma_{0\mathrm{tot}}(np)$ at 1.3, 1.4 and 1.5 GeV and $\sigma_{0\mathrm{tot}}(n$C) at 1.4 and 1.5 GeV. These data were obtained using the same apparatus and high intensity unpolarized deuteron beams were extracted either from the Synchrophasotron, or from the Nuclotron. Polarization Direction Neutron Beam Deuteron Beam Phase Shift Analysis Target Polarization Anischenko, N. G. aut Antonenko, V. G. aut Averichev, S. A. aut Azhgirey, L. S. aut Bartenev, V. D. aut Bazhanov, N. A. aut Belyaev, A. A. aut Blinov, N. A. aut Borisov, N. S. aut Borzakov, S. B. aut Borzunov, Yu T. aut Bushuev, Yu P. aut Chernenko, L. P. aut Chernykh, E. V. aut Chumakov, V. F. aut Dolgii, S. A. aut Fedorov, A. N. aut Fimushkin, V. V. aut Finger, M. aut Finger, M. aut Golovanov, L. B. aut Gurevich, G. M. aut Janata, A. aut Kirillov, A. D. aut Kolomiets, V. G. aut Komogorov, E. V. aut Kovalenko, A. D. aut Kovalev, A. I. aut Krasnov, V. A. aut Krstonoshich, P. aut Kuzmin, E. S. aut Ladygin, V. P. aut Lazarev, A. B. aut Lehar, F. aut de Lesquen, A. aut Liburg, M. Yu aut Livanov, A. N. aut Lukhanin, A. A. aut Maniakov, P. K. aut Matafonov, V. N. aut Matyushevsky, E. A. aut Moroz, V. D. aut Morozov, A. A. aut Neganov, A. B. aut Nikolaevsky, G. P. aut Nomofilov, A. A. aut Panteleev, Tz aut Pilipenko, Yu K. aut Pisarev, I. L. aut Plis, Yu A. aut Polunin, Yu P. aut Prokofiev, A. N. aut Prytkov, V. Yu aut Rukoyatkin, P. A. aut Schedrov, V. A. aut Schevelev, O. N. aut Shilov, S. N. aut Shindin, R. A. aut Slunečka, M. aut Slunečková, V. aut Starikov, A. Yu aut Stoletov, G. D. aut Strunov, L. N. aut Svetov, A. L. aut Usov, Yu A. aut Vasiliev, T. aut Volkov, V. I. aut Vorobiev, E. I. aut Yudin, I. P. aut Zaitsev, I. V. aut Zhdanov, A. A. aut Zhmyrov, V. N. aut Enthalten in The European physical journal / C Springer-Verlag, 1998 37(2004), 1 vom: Sept., Seite 79-90 (DE-627)235469777 (DE-600)1397769-6 (DE-576)061879150 1434-6044 nnns volume:37 year:2004 number:1 month:09 pages:79-90 https://doi.org/10.1140/epjc/s2004-01987-9 lizenzpflichtig Volltext GBV_USEFLAG_A SYSFLAG_A GBV_OLC SSG-OLC-PHY GBV_ILN_11 GBV_ILN_20 GBV_ILN_21 GBV_ILN_22 GBV_ILN_30 GBV_ILN_40 GBV_ILN_62 GBV_ILN_70 GBV_ILN_130 GBV_ILN_267 GBV_ILN_2003 GBV_ILN_2006 GBV_ILN_2018 GBV_ILN_4029 GBV_ILN_4082 GBV_ILN_4116 GBV_ILN_4277 GBV_ILN_4305 GBV_ILN_4306 GBV_ILN_4307 GBV_ILN_4310 GBV_ILN_4317 AR 37 2004 1 09 79-90 |
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10.1140/epjc/s2004-01987-9 doi (DE-627)OLC2069082199 (DE-He213)s2004-01987-9-p DE-627 ger DE-627 rakwb eng 530 VZ 530 VZ Sharov, V. I. verfasserin aut Measurement of the np total cross section difference $\Delta\sigma_{\mathrm L}(np)$ at 1.39, 1.69, 1.89 and 1.99 GeV 2004 Text txt rdacontent ohne Hilfsmittel zu benutzen n rdamedia Band nc rdacarrier © Springer-Verlag Berlin/Heidelberg 2004 Abstract. New accurate results of the neutron-proton spin-dependent total cross section difference $\Delta\sigma_{\mathrm L}(np)$ at the neutron beam kinetic energies 1.39, 1.69, 1.89 and 1.99 GeV are presented. Measurements were carried out in 2001 at the Synchrophasotron of the Veksler and Baldin Laboratory of High Energies of the Joint Institute for Nuclear Research. A quasi-monochromatic neutron beam was produced by break-up of extracted polarized deuterons. The deuteron (and hence neutron) polarization direction was flipped every accelerator burst. The vertical neutron polarization direction was rotated onto the neutron beam direction and longitudinally (L) polarized neutrons were transmitted through a large proton L-polarized target. The target polarization vector was inverted after 1-2 days of measurements. The data were recorded for four different combinations of the beam and target parallel and antiparallel polarization directions at each energy. A fast decrease of $\Delta\sigma_{\mathrm L}(np)$ with increasing energy above 1.1 GeV was confirmed. The structure in the $\Delta\sigma_{\mathrm L}(np)$ energy dependence around 1.8 GeV, first observed from our previous data, seems to be well pronounced. The new results are also compared with model predictions and with phase shift analysis fits. The $\Delta\sigma_{\mathrm L}$ quantities for isosinglet state I = 0, deduced from the measured $\Delta\sigma_{\mathrm L}(np)$ values and the known $\Delta\sigma_{\mathrm L}(pp)$ data, are also given. The results were completed by the measurements of unpolarized total cross sections $\sigma_{0\mathrm{tot}}(np)$ at 1.3, 1.4 and 1.5 GeV and $\sigma_{0\mathrm{tot}}(n$C) at 1.4 and 1.5 GeV. These data were obtained using the same apparatus and high intensity unpolarized deuteron beams were extracted either from the Synchrophasotron, or from the Nuclotron. Polarization Direction Neutron Beam Deuteron Beam Phase Shift Analysis Target Polarization Anischenko, N. G. aut Antonenko, V. G. aut Averichev, S. A. aut Azhgirey, L. S. aut Bartenev, V. D. aut Bazhanov, N. A. aut Belyaev, A. A. aut Blinov, N. A. aut Borisov, N. S. aut Borzakov, S. B. aut Borzunov, Yu T. aut Bushuev, Yu P. aut Chernenko, L. P. aut Chernykh, E. V. aut Chumakov, V. F. aut Dolgii, S. A. aut Fedorov, A. N. aut Fimushkin, V. V. aut Finger, M. aut Finger, M. aut Golovanov, L. B. aut Gurevich, G. M. aut Janata, A. aut Kirillov, A. D. aut Kolomiets, V. G. aut Komogorov, E. V. aut Kovalenko, A. D. aut Kovalev, A. I. aut Krasnov, V. A. aut Krstonoshich, P. aut Kuzmin, E. S. aut Ladygin, V. P. aut Lazarev, A. B. aut Lehar, F. aut de Lesquen, A. aut Liburg, M. Yu aut Livanov, A. N. aut Lukhanin, A. A. aut Maniakov, P. K. aut Matafonov, V. N. aut Matyushevsky, E. A. aut Moroz, V. D. aut Morozov, A. A. aut Neganov, A. B. aut Nikolaevsky, G. P. aut Nomofilov, A. A. aut Panteleev, Tz aut Pilipenko, Yu K. aut Pisarev, I. L. aut Plis, Yu A. aut Polunin, Yu P. aut Prokofiev, A. N. aut Prytkov, V. Yu aut Rukoyatkin, P. A. aut Schedrov, V. A. aut Schevelev, O. N. aut Shilov, S. N. aut Shindin, R. A. aut Slunečka, M. aut Slunečková, V. aut Starikov, A. Yu aut Stoletov, G. D. aut Strunov, L. N. aut Svetov, A. L. aut Usov, Yu A. aut Vasiliev, T. aut Volkov, V. I. aut Vorobiev, E. I. aut Yudin, I. P. aut Zaitsev, I. V. aut Zhdanov, A. A. aut Zhmyrov, V. N. aut Enthalten in The European physical journal / C Springer-Verlag, 1998 37(2004), 1 vom: Sept., Seite 79-90 (DE-627)235469777 (DE-600)1397769-6 (DE-576)061879150 1434-6044 nnns volume:37 year:2004 number:1 month:09 pages:79-90 https://doi.org/10.1140/epjc/s2004-01987-9 lizenzpflichtig Volltext GBV_USEFLAG_A SYSFLAG_A GBV_OLC SSG-OLC-PHY GBV_ILN_11 GBV_ILN_20 GBV_ILN_21 GBV_ILN_22 GBV_ILN_30 GBV_ILN_40 GBV_ILN_62 GBV_ILN_70 GBV_ILN_130 GBV_ILN_267 GBV_ILN_2003 GBV_ILN_2006 GBV_ILN_2018 GBV_ILN_4029 GBV_ILN_4082 GBV_ILN_4116 GBV_ILN_4277 GBV_ILN_4305 GBV_ILN_4306 GBV_ILN_4307 GBV_ILN_4310 GBV_ILN_4317 AR 37 2004 1 09 79-90 |
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Sharov, V. I. @@aut@@ Anischenko, N. G. @@aut@@ Antonenko, V. G. @@aut@@ Averichev, S. A. @@aut@@ Azhgirey, L. S. @@aut@@ Bartenev, V. D. @@aut@@ Bazhanov, N. A. @@aut@@ Belyaev, A. A. @@aut@@ Blinov, N. A. @@aut@@ Borisov, N. S. @@aut@@ Borzakov, S. B. @@aut@@ Borzunov, Yu T. @@aut@@ Bushuev, Yu P. @@aut@@ Chernenko, L. P. @@aut@@ Chernykh, E. V. @@aut@@ Chumakov, V. F. @@aut@@ Dolgii, S. A. @@aut@@ Fedorov, A. N. @@aut@@ Fimushkin, V. V. @@aut@@ Finger, M. @@aut@@ Golovanov, L. B. @@aut@@ Gurevich, G. M. @@aut@@ Janata, A. @@aut@@ Kirillov, A. D. @@aut@@ Kolomiets, V. G. @@aut@@ Komogorov, E. V. @@aut@@ Kovalenko, A. D. @@aut@@ Kovalev, A. I. @@aut@@ Krasnov, V. A. @@aut@@ Krstonoshich, P. @@aut@@ Kuzmin, E. S. @@aut@@ Ladygin, V. P. @@aut@@ Lazarev, A. B. @@aut@@ Lehar, F. @@aut@@ de Lesquen, A. @@aut@@ Liburg, M. Yu @@aut@@ Livanov, A. N. @@aut@@ Lukhanin, A. A. @@aut@@ Maniakov, P. K. @@aut@@ Matafonov, V. N. @@aut@@ Matyushevsky, E. A. @@aut@@ Moroz, V. D. @@aut@@ Morozov, A. A. @@aut@@ Neganov, A. B. @@aut@@ Nikolaevsky, G. P. @@aut@@ Nomofilov, A. A. @@aut@@ Panteleev, Tz @@aut@@ Pilipenko, Yu K. @@aut@@ Pisarev, I. L. @@aut@@ Plis, Yu A. @@aut@@ Polunin, Yu P. @@aut@@ Prokofiev, A. N. @@aut@@ Prytkov, V. Yu @@aut@@ Rukoyatkin, P. A. @@aut@@ Schedrov, V. A. @@aut@@ Schevelev, O. N. @@aut@@ Shilov, S. N. @@aut@@ Shindin, R. A. @@aut@@ Slunečka, M. @@aut@@ Slunečková, V. @@aut@@ Starikov, A. Yu @@aut@@ Stoletov, G. D. @@aut@@ Strunov, L. N. @@aut@@ Svetov, A. L. @@aut@@ Usov, Yu A. @@aut@@ Vasiliev, T. @@aut@@ Volkov, V. I. @@aut@@ Vorobiev, E. I. @@aut@@ Yudin, I. P. @@aut@@ Zaitsev, I. V. @@aut@@ Zhdanov, A. A. @@aut@@ Zhmyrov, V. N. @@aut@@ |
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New accurate results of the neutron-proton spin-dependent total cross section difference $\Delta\sigma_{\mathrm L}(np)$ at the neutron beam kinetic energies 1.39, 1.69, 1.89 and 1.99 GeV are presented. Measurements were carried out in 2001 at the Synchrophasotron of the Veksler and Baldin Laboratory of High Energies of the Joint Institute for Nuclear Research. A quasi-monochromatic neutron beam was produced by break-up of extracted polarized deuterons. The deuteron (and hence neutron) polarization direction was flipped every accelerator burst. The vertical neutron polarization direction was rotated onto the neutron beam direction and longitudinally (L) polarized neutrons were transmitted through a large proton L-polarized target. The target polarization vector was inverted after 1-2 days of measurements. The data were recorded for four different combinations of the beam and target parallel and antiparallel polarization directions at each energy. A fast decrease of $\Delta\sigma_{\mathrm L}(np)$ with increasing energy above 1.1 GeV was confirmed. The structure in the $\Delta\sigma_{\mathrm L}(np)$ energy dependence around 1.8 GeV, first observed from our previous data, seems to be well pronounced. The new results are also compared with model predictions and with phase shift analysis fits. The $\Delta\sigma_{\mathrm L}$ quantities for isosinglet state I = 0, deduced from the measured $\Delta\sigma_{\mathrm L}(np)$ values and the known $\Delta\sigma_{\mathrm L}(pp)$ data, are also given. The results were completed by the measurements of unpolarized total cross sections $\sigma_{0\mathrm{tot}}(np)$ at 1.3, 1.4 and 1.5 GeV and $\sigma_{0\mathrm{tot}}(n$C) at 1.4 and 1.5 GeV. 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Sharov, V. I. |
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530 VZ Measurement of the np total cross section difference $\Delta\sigma_{\mathrm L}(np)$ at 1.39, 1.69, 1.89 and 1.99 GeV Polarization Direction Neutron Beam Deuteron Beam Phase Shift Analysis Target Polarization |
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Measurement of the np total cross section difference $\Delta\sigma_{\mathrm L}(np)$ at 1.39, 1.69, 1.89 and 1.99 GeV |
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Measurement of the np total cross section difference $\Delta\sigma_{\mathrm L}(np)$ at 1.39, 1.69, 1.89 and 1.99 GeV |
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Sharov, V. I. Anischenko, N. G. Antonenko, V. G. Averichev, S. A. Azhgirey, L. S. Bartenev, V. D. Bazhanov, N. A. Belyaev, A. A. Blinov, N. A. Borisov, N. S. Borzakov, S. B. Borzunov, Yu T. Bushuev, Yu P. Chernenko, L. P. Chernykh, E. V. Chumakov, V. F. Dolgii, S. A. Fedorov, A. N. Fimushkin, V. V. Finger, M. Golovanov, L. B. Gurevich, G. M. Janata, A. Kirillov, A. D. Kolomiets, V. G. Komogorov, E. V. Kovalenko, A. D. Kovalev, A. I. Krasnov, V. A. Krstonoshich, P. Kuzmin, E. S. Ladygin, V. P. Lazarev, A. B. Lehar, F. de Lesquen, A. Liburg, M. Yu Livanov, A. N. Lukhanin, A. A. Maniakov, P. K. Matafonov, V. N. Matyushevsky, E. A. Moroz, V. D. Morozov, A. A. Neganov, A. B. Nikolaevsky, G. P. Nomofilov, A. A. Panteleev, Tz Pilipenko, Yu K. Pisarev, I. L. Plis, Yu A. Polunin, Yu P. Prokofiev, A. N. Prytkov, V. Yu Rukoyatkin, P. A. Schedrov, V. A. Schevelev, O. N. Shilov, S. N. Shindin, R. A. Slunečka, M. Slunečková, V. Starikov, A. Yu Stoletov, G. D. Strunov, L. N. Svetov, A. L. Usov, Yu A. Vasiliev, T. Volkov, V. I. Vorobiev, E. I. Yudin, I. P. Zaitsev, I. V. Zhdanov, A. A. Zhmyrov, V. N. |
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measurement of the np total cross section difference $\delta\sigma_{\mathrm l}(np)$ at 1.39, 1.69, 1.89 and 1.99 gev |
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Measurement of the np total cross section difference $\Delta\sigma_{\mathrm L}(np)$ at 1.39, 1.69, 1.89 and 1.99 GeV |
abstract |
Abstract. New accurate results of the neutron-proton spin-dependent total cross section difference $\Delta\sigma_{\mathrm L}(np)$ at the neutron beam kinetic energies 1.39, 1.69, 1.89 and 1.99 GeV are presented. Measurements were carried out in 2001 at the Synchrophasotron of the Veksler and Baldin Laboratory of High Energies of the Joint Institute for Nuclear Research. A quasi-monochromatic neutron beam was produced by break-up of extracted polarized deuterons. The deuteron (and hence neutron) polarization direction was flipped every accelerator burst. The vertical neutron polarization direction was rotated onto the neutron beam direction and longitudinally (L) polarized neutrons were transmitted through a large proton L-polarized target. The target polarization vector was inverted after 1-2 days of measurements. The data were recorded for four different combinations of the beam and target parallel and antiparallel polarization directions at each energy. A fast decrease of $\Delta\sigma_{\mathrm L}(np)$ with increasing energy above 1.1 GeV was confirmed. The structure in the $\Delta\sigma_{\mathrm L}(np)$ energy dependence around 1.8 GeV, first observed from our previous data, seems to be well pronounced. The new results are also compared with model predictions and with phase shift analysis fits. The $\Delta\sigma_{\mathrm L}$ quantities for isosinglet state I = 0, deduced from the measured $\Delta\sigma_{\mathrm L}(np)$ values and the known $\Delta\sigma_{\mathrm L}(pp)$ data, are also given. The results were completed by the measurements of unpolarized total cross sections $\sigma_{0\mathrm{tot}}(np)$ at 1.3, 1.4 and 1.5 GeV and $\sigma_{0\mathrm{tot}}(n$C) at 1.4 and 1.5 GeV. These data were obtained using the same apparatus and high intensity unpolarized deuteron beams were extracted either from the Synchrophasotron, or from the Nuclotron. © Springer-Verlag Berlin/Heidelberg 2004 |
abstractGer |
Abstract. New accurate results of the neutron-proton spin-dependent total cross section difference $\Delta\sigma_{\mathrm L}(np)$ at the neutron beam kinetic energies 1.39, 1.69, 1.89 and 1.99 GeV are presented. Measurements were carried out in 2001 at the Synchrophasotron of the Veksler and Baldin Laboratory of High Energies of the Joint Institute for Nuclear Research. A quasi-monochromatic neutron beam was produced by break-up of extracted polarized deuterons. The deuteron (and hence neutron) polarization direction was flipped every accelerator burst. The vertical neutron polarization direction was rotated onto the neutron beam direction and longitudinally (L) polarized neutrons were transmitted through a large proton L-polarized target. The target polarization vector was inverted after 1-2 days of measurements. The data were recorded for four different combinations of the beam and target parallel and antiparallel polarization directions at each energy. A fast decrease of $\Delta\sigma_{\mathrm L}(np)$ with increasing energy above 1.1 GeV was confirmed. The structure in the $\Delta\sigma_{\mathrm L}(np)$ energy dependence around 1.8 GeV, first observed from our previous data, seems to be well pronounced. The new results are also compared with model predictions and with phase shift analysis fits. The $\Delta\sigma_{\mathrm L}$ quantities for isosinglet state I = 0, deduced from the measured $\Delta\sigma_{\mathrm L}(np)$ values and the known $\Delta\sigma_{\mathrm L}(pp)$ data, are also given. The results were completed by the measurements of unpolarized total cross sections $\sigma_{0\mathrm{tot}}(np)$ at 1.3, 1.4 and 1.5 GeV and $\sigma_{0\mathrm{tot}}(n$C) at 1.4 and 1.5 GeV. These data were obtained using the same apparatus and high intensity unpolarized deuteron beams were extracted either from the Synchrophasotron, or from the Nuclotron. © Springer-Verlag Berlin/Heidelberg 2004 |
abstract_unstemmed |
Abstract. New accurate results of the neutron-proton spin-dependent total cross section difference $\Delta\sigma_{\mathrm L}(np)$ at the neutron beam kinetic energies 1.39, 1.69, 1.89 and 1.99 GeV are presented. Measurements were carried out in 2001 at the Synchrophasotron of the Veksler and Baldin Laboratory of High Energies of the Joint Institute for Nuclear Research. A quasi-monochromatic neutron beam was produced by break-up of extracted polarized deuterons. The deuteron (and hence neutron) polarization direction was flipped every accelerator burst. The vertical neutron polarization direction was rotated onto the neutron beam direction and longitudinally (L) polarized neutrons were transmitted through a large proton L-polarized target. The target polarization vector was inverted after 1-2 days of measurements. The data were recorded for four different combinations of the beam and target parallel and antiparallel polarization directions at each energy. A fast decrease of $\Delta\sigma_{\mathrm L}(np)$ with increasing energy above 1.1 GeV was confirmed. The structure in the $\Delta\sigma_{\mathrm L}(np)$ energy dependence around 1.8 GeV, first observed from our previous data, seems to be well pronounced. The new results are also compared with model predictions and with phase shift analysis fits. The $\Delta\sigma_{\mathrm L}$ quantities for isosinglet state I = 0, deduced from the measured $\Delta\sigma_{\mathrm L}(np)$ values and the known $\Delta\sigma_{\mathrm L}(pp)$ data, are also given. The results were completed by the measurements of unpolarized total cross sections $\sigma_{0\mathrm{tot}}(np)$ at 1.3, 1.4 and 1.5 GeV and $\sigma_{0\mathrm{tot}}(n$C) at 1.4 and 1.5 GeV. These data were obtained using the same apparatus and high intensity unpolarized deuteron beams were extracted either from the Synchrophasotron, or from the Nuclotron. © Springer-Verlag Berlin/Heidelberg 2004 |
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1 |
title_short |
Measurement of the np total cross section difference $\Delta\sigma_{\mathrm L}(np)$ at 1.39, 1.69, 1.89 and 1.99 GeV |
url |
https://doi.org/10.1140/epjc/s2004-01987-9 |
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author2 |
Anischenko, N. G. Antonenko, V. G. Averichev, S. A. Azhgirey, L. S. Bartenev, V. D. Bazhanov, N. A. Belyaev, A. A. Blinov, N. A. Borisov, N. S. Borzakov, S. B. Borzunov, Yu T. Bushuev, Yu P. Chernenko, L. P. Chernykh, E. V. Chumakov, V. F. Dolgii, S. A. Fedorov, A. N. Fimushkin, V. V. Finger, M. Golovanov, L. B. Gurevich, G. M. Janata, A. Kirillov, A. D. Kolomiets, V. G. Komogorov, E. V. Kovalenko, A. D. Kovalev, A. I. Krasnov, V. A. Krstonoshich, P. Kuzmin, E. S. Ladygin, V. P. Lazarev, A. B. Lehar, F. de Lesquen, A. Liburg, M. Yu Livanov, A. N. Lukhanin, A. A. Maniakov, P. K. Matafonov, V. N. Matyushevsky, E. A. Moroz, V. D. Morozov, A. A. Neganov, A. B. Nikolaevsky, G. P. Nomofilov, A. A. Panteleev, Tz Pilipenko, Yu K. Pisarev, I. L. Plis, Yu A. Polunin, Yu P. Prokofiev, A. N. Prytkov, V. Yu Rukoyatkin, P. A. Schedrov, V. A. Schevelev, O. N. Shilov, S. N. Shindin, R. A. Slunečka, M. Slunečková, V. Starikov, A. Yu Stoletov, G. D. Strunov, L. N. Svetov, A. L. Usov, Yu A. Vasiliev, T. Volkov, V. I. Vorobiev, E. I. Yudin, I. P. Zaitsev, I. V. Zhdanov, A. A. Zhmyrov, V. N. |
author2Str |
Anischenko, N. G. Antonenko, V. G. Averichev, S. A. Azhgirey, L. S. Bartenev, V. D. Bazhanov, N. A. Belyaev, A. A. Blinov, N. A. Borisov, N. S. Borzakov, S. B. Borzunov, Yu T. Bushuev, Yu P. Chernenko, L. P. Chernykh, E. V. Chumakov, V. F. Dolgii, S. A. Fedorov, A. N. Fimushkin, V. V. Finger, M. Golovanov, L. B. Gurevich, G. M. Janata, A. Kirillov, A. D. Kolomiets, V. G. Komogorov, E. V. Kovalenko, A. D. Kovalev, A. I. Krasnov, V. A. Krstonoshich, P. Kuzmin, E. S. Ladygin, V. P. Lazarev, A. B. Lehar, F. de Lesquen, A. Liburg, M. Yu Livanov, A. N. Lukhanin, A. A. Maniakov, P. K. Matafonov, V. N. Matyushevsky, E. A. Moroz, V. D. Morozov, A. A. Neganov, A. B. Nikolaevsky, G. P. Nomofilov, A. A. Panteleev, Tz Pilipenko, Yu K. Pisarev, I. L. Plis, Yu A. Polunin, Yu P. Prokofiev, A. N. Prytkov, V. Yu Rukoyatkin, P. A. Schedrov, V. A. Schevelev, O. N. Shilov, S. N. Shindin, R. A. Slunečka, M. Slunečková, V. Starikov, A. Yu Stoletov, G. D. Strunov, L. N. Svetov, A. L. Usov, Yu A. Vasiliev, T. Volkov, V. I. Vorobiev, E. I. Yudin, I. P. Zaitsev, I. V. Zhdanov, A. A. Zhmyrov, V. N. |
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doi_str |
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up_date |
2024-07-03T20:51:28.597Z |
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