Nanometer-beam-size measurement during collisions at linear colliders
We describe a method to measure a nanometer beam size during collisions at future e+e- linear colliders by using e+e- pairs. A huge number of pairs are deflected in a strong Coulomb potential made by an oncoming beam. Since the potential is a function of the beam size (σx,σy), the pairs are expected...
Ausführliche Beschreibung
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E-Artikel |
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1995 |
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Online-Ressource 8 |
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APS Digital Backfile Archive 1893-2003 |
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Übergeordnetes Werk: |
Enthalten in: Physical review / E - College Park, Md. : APS, 1993, 51(1995), 6, Seite 6119-6126 |
Übergeordnetes Werk: |
volume:51 ; year:1995 ; number:6 ; pages:6119-6126 ; extent:8 |
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NLEJ250502682 |
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520 | |a We describe a method to measure a nanometer beam size during collisions at future e+e- linear colliders by using e+e- pairs. A huge number of pairs are deflected in a strong Coulomb potential made by an oncoming beam. Since the potential is a function of the beam size (σx,σy), the pairs are expected to carry this information, especially in their angular distributions. We investigated this process in detail by simulation, using a computer program abel under realistic experimental conditions as well as by analytic studies. Besides the beam size, a vertical displacement between two beams and rotations in the transverse beam profile can be precisely measured. Because of the high statistics of pairs, the results from these measurements can be used for feedback during real-time operation of linear colliders. | ||
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(DE-627)NLEJ250502682 (DE-601)aps:67bdfb153dabce4682c77d0500870af4f0cae547 DE-627 ger DE-627 rakwb Nanometer-beam-size measurement during collisions at linear colliders 1995 Online-Ressource 8 Text txt rdacontent Computermedien c rdamedia Online-Ressource cr rdacarrier We describe a method to measure a nanometer beam size during collisions at future e+e- linear colliders by using e+e- pairs. A huge number of pairs are deflected in a strong Coulomb potential made by an oncoming beam. Since the potential is a function of the beam size (σx,σy), the pairs are expected to carry this information, especially in their angular distributions. We investigated this process in detail by simulation, using a computer program abel under realistic experimental conditions as well as by analytic studies. Besides the beam size, a vertical displacement between two beams and rotations in the transverse beam profile can be precisely measured. Because of the high statistics of pairs, the results from these measurements can be used for feedback during real-time operation of linear colliders. APS Digital Backfile Archive 1893-2003 Tauchi, T. oth Yokoya, K. oth Enthalten in Physical review / E College Park, Md. : APS, 1993 51(1995), 6, Seite 6119-6126 Online-Ressource (DE-627)NLEJ248237837 (DE-600)1472725-0 1550-2376 nnns volume:51 year:1995 number:6 pages:6119-6126 extent:8 https://www.tib.eu/de/suchen/id/aps%3A67bdfb153dabce4682c77d0500870af4f0cae547 Verlag Deutschlandweit zugänglich GBV_USEFLAG_U ZDB-1-APS GBV_NL_ARTICLE AR 51 1995 6 6119-6126 8 |
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(DE-627)NLEJ250502682 (DE-601)aps:67bdfb153dabce4682c77d0500870af4f0cae547 DE-627 ger DE-627 rakwb Nanometer-beam-size measurement during collisions at linear colliders 1995 Online-Ressource 8 Text txt rdacontent Computermedien c rdamedia Online-Ressource cr rdacarrier We describe a method to measure a nanometer beam size during collisions at future e+e- linear colliders by using e+e- pairs. A huge number of pairs are deflected in a strong Coulomb potential made by an oncoming beam. Since the potential is a function of the beam size (σx,σy), the pairs are expected to carry this information, especially in their angular distributions. We investigated this process in detail by simulation, using a computer program abel under realistic experimental conditions as well as by analytic studies. Besides the beam size, a vertical displacement between two beams and rotations in the transverse beam profile can be precisely measured. Because of the high statistics of pairs, the results from these measurements can be used for feedback during real-time operation of linear colliders. APS Digital Backfile Archive 1893-2003 Tauchi, T. oth Yokoya, K. oth Enthalten in Physical review / E College Park, Md. : APS, 1993 51(1995), 6, Seite 6119-6126 Online-Ressource (DE-627)NLEJ248237837 (DE-600)1472725-0 1550-2376 nnns volume:51 year:1995 number:6 pages:6119-6126 extent:8 https://www.tib.eu/de/suchen/id/aps%3A67bdfb153dabce4682c77d0500870af4f0cae547 Verlag Deutschlandweit zugänglich GBV_USEFLAG_U ZDB-1-APS GBV_NL_ARTICLE AR 51 1995 6 6119-6126 8 |
allfields_unstemmed |
(DE-627)NLEJ250502682 (DE-601)aps:67bdfb153dabce4682c77d0500870af4f0cae547 DE-627 ger DE-627 rakwb Nanometer-beam-size measurement during collisions at linear colliders 1995 Online-Ressource 8 Text txt rdacontent Computermedien c rdamedia Online-Ressource cr rdacarrier We describe a method to measure a nanometer beam size during collisions at future e+e- linear colliders by using e+e- pairs. A huge number of pairs are deflected in a strong Coulomb potential made by an oncoming beam. Since the potential is a function of the beam size (σx,σy), the pairs are expected to carry this information, especially in their angular distributions. We investigated this process in detail by simulation, using a computer program abel under realistic experimental conditions as well as by analytic studies. Besides the beam size, a vertical displacement between two beams and rotations in the transverse beam profile can be precisely measured. Because of the high statistics of pairs, the results from these measurements can be used for feedback during real-time operation of linear colliders. APS Digital Backfile Archive 1893-2003 Tauchi, T. oth Yokoya, K. oth Enthalten in Physical review / E College Park, Md. : APS, 1993 51(1995), 6, Seite 6119-6126 Online-Ressource (DE-627)NLEJ248237837 (DE-600)1472725-0 1550-2376 nnns volume:51 year:1995 number:6 pages:6119-6126 extent:8 https://www.tib.eu/de/suchen/id/aps%3A67bdfb153dabce4682c77d0500870af4f0cae547 Verlag Deutschlandweit zugänglich GBV_USEFLAG_U ZDB-1-APS GBV_NL_ARTICLE AR 51 1995 6 6119-6126 8 |
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(DE-627)NLEJ250502682 (DE-601)aps:67bdfb153dabce4682c77d0500870af4f0cae547 DE-627 ger DE-627 rakwb Nanometer-beam-size measurement during collisions at linear colliders 1995 Online-Ressource 8 Text txt rdacontent Computermedien c rdamedia Online-Ressource cr rdacarrier We describe a method to measure a nanometer beam size during collisions at future e+e- linear colliders by using e+e- pairs. A huge number of pairs are deflected in a strong Coulomb potential made by an oncoming beam. Since the potential is a function of the beam size (σx,σy), the pairs are expected to carry this information, especially in their angular distributions. We investigated this process in detail by simulation, using a computer program abel under realistic experimental conditions as well as by analytic studies. Besides the beam size, a vertical displacement between two beams and rotations in the transverse beam profile can be precisely measured. Because of the high statistics of pairs, the results from these measurements can be used for feedback during real-time operation of linear colliders. APS Digital Backfile Archive 1893-2003 Tauchi, T. oth Yokoya, K. oth Enthalten in Physical review / E College Park, Md. : APS, 1993 51(1995), 6, Seite 6119-6126 Online-Ressource (DE-627)NLEJ248237837 (DE-600)1472725-0 1550-2376 nnns volume:51 year:1995 number:6 pages:6119-6126 extent:8 https://www.tib.eu/de/suchen/id/aps%3A67bdfb153dabce4682c77d0500870af4f0cae547 Verlag Deutschlandweit zugänglich GBV_USEFLAG_U ZDB-1-APS GBV_NL_ARTICLE AR 51 1995 6 6119-6126 8 |
allfieldsSound |
(DE-627)NLEJ250502682 (DE-601)aps:67bdfb153dabce4682c77d0500870af4f0cae547 DE-627 ger DE-627 rakwb Nanometer-beam-size measurement during collisions at linear colliders 1995 Online-Ressource 8 Text txt rdacontent Computermedien c rdamedia Online-Ressource cr rdacarrier We describe a method to measure a nanometer beam size during collisions at future e+e- linear colliders by using e+e- pairs. A huge number of pairs are deflected in a strong Coulomb potential made by an oncoming beam. Since the potential is a function of the beam size (σx,σy), the pairs are expected to carry this information, especially in their angular distributions. We investigated this process in detail by simulation, using a computer program abel under realistic experimental conditions as well as by analytic studies. Besides the beam size, a vertical displacement between two beams and rotations in the transverse beam profile can be precisely measured. Because of the high statistics of pairs, the results from these measurements can be used for feedback during real-time operation of linear colliders. APS Digital Backfile Archive 1893-2003 Tauchi, T. oth Yokoya, K. oth Enthalten in Physical review / E College Park, Md. : APS, 1993 51(1995), 6, Seite 6119-6126 Online-Ressource (DE-627)NLEJ248237837 (DE-600)1472725-0 1550-2376 nnns volume:51 year:1995 number:6 pages:6119-6126 extent:8 https://www.tib.eu/de/suchen/id/aps%3A67bdfb153dabce4682c77d0500870af4f0cae547 Verlag Deutschlandweit zugänglich GBV_USEFLAG_U ZDB-1-APS GBV_NL_ARTICLE AR 51 1995 6 6119-6126 8 |
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Nanometer-beam-size measurement during collisions at linear colliders |
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We describe a method to measure a nanometer beam size during collisions at future e+e- linear colliders by using e+e- pairs. A huge number of pairs are deflected in a strong Coulomb potential made by an oncoming beam. Since the potential is a function of the beam size (σx,σy), the pairs are expected to carry this information, especially in their angular distributions. We investigated this process in detail by simulation, using a computer program abel under realistic experimental conditions as well as by analytic studies. Besides the beam size, a vertical displacement between two beams and rotations in the transverse beam profile can be precisely measured. Because of the high statistics of pairs, the results from these measurements can be used for feedback during real-time operation of linear colliders. |
abstractGer |
We describe a method to measure a nanometer beam size during collisions at future e+e- linear colliders by using e+e- pairs. A huge number of pairs are deflected in a strong Coulomb potential made by an oncoming beam. Since the potential is a function of the beam size (σx,σy), the pairs are expected to carry this information, especially in their angular distributions. We investigated this process in detail by simulation, using a computer program abel under realistic experimental conditions as well as by analytic studies. Besides the beam size, a vertical displacement between two beams and rotations in the transverse beam profile can be precisely measured. Because of the high statistics of pairs, the results from these measurements can be used for feedback during real-time operation of linear colliders. |
abstract_unstemmed |
We describe a method to measure a nanometer beam size during collisions at future e+e- linear colliders by using e+e- pairs. A huge number of pairs are deflected in a strong Coulomb potential made by an oncoming beam. Since the potential is a function of the beam size (σx,σy), the pairs are expected to carry this information, especially in their angular distributions. We investigated this process in detail by simulation, using a computer program abel under realistic experimental conditions as well as by analytic studies. Besides the beam size, a vertical displacement between two beams and rotations in the transverse beam profile can be precisely measured. Because of the high statistics of pairs, the results from these measurements can be used for feedback during real-time operation of linear colliders. |
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