Classical and quantum dynamics of the impulsively driven hydrogen atom
We investigate the classical and quantum dynamics of the hydrogen atom in a Rydberg state subject to a sequence of periodic and random pulses. One goal of this study is to test the validity of classical electron transport theories. We analyze the critical momentum transfer for which 10% of the Rydbe...
Ausführliche Beschreibung
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Englisch |
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1993 |
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Elsevier Journal Backfiles on ScienceDirect 1907 - 2002 |
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in: Nuclear Inst. and Methods in Physics Research, B - Amsterdam : Elsevier, 79(1993), 1-4, Seite 109-113 |
Übergeordnetes Werk: |
volume:79 ; year:1993 ; number:1-4 ; pages:109-113 |
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520 | |a We investigate the classical and quantum dynamics of the hydrogen atom in a Rydberg state subject to a sequence of periodic and random pulses. One goal of this study is to test the validity of classical electron transport theories. We analyze the critical momentum transfer for which 10% of the Rydberg atoms are ionized after a large number of pulses as a function of the frequency of the perturbation. The quantum mechanical results for a periodic sequence of pulses exhibit clear structures which are not present in a classical simulation. These structures are shown to vanish for the case of stochastic pulses for which agreement is obtained between the classical and quantum mechanical results. The dynamics of the quantum mechanical periodic system is analyzed in terms of quasi-eigenstates of the period-one time evolution operator. | ||
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700 | 1 | |a Burgdorfer, J. |4 oth | |
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(DE-627)NLEJ180792571 (DE-599)GBVNLZ180792571 DE-627 ger DE-627 rakwb eng Classical and quantum dynamics of the impulsively driven hydrogen atom 1993 nicht spezifiziert zzz rdacontent nicht spezifiziert z rdamedia nicht spezifiziert zu rdacarrier We investigate the classical and quantum dynamics of the hydrogen atom in a Rydberg state subject to a sequence of periodic and random pulses. One goal of this study is to test the validity of classical electron transport theories. We analyze the critical momentum transfer for which 10% of the Rydberg atoms are ionized after a large number of pulses as a function of the frequency of the perturbation. The quantum mechanical results for a periodic sequence of pulses exhibit clear structures which are not present in a classical simulation. These structures are shown to vanish for the case of stochastic pulses for which agreement is obtained between the classical and quantum mechanical results. The dynamics of the quantum mechanical periodic system is analyzed in terms of quasi-eigenstates of the period-one time evolution operator. Elsevier Journal Backfiles on ScienceDirect 1907 - 2002 Melles, M. oth Reinhold, C.O. oth Burgdorfer, J. oth in Nuclear Inst. and Methods in Physics Research, B Amsterdam : Elsevier 79(1993), 1-4, Seite 109-113 (DE-627)NLEJ177059540 (DE-600)1466524-4 0168-583X nnns volume:79 year:1993 number:1-4 pages:109-113 http://linkinghub.elsevier.com/retrieve/pii/0168-583X(93)95299-K GBV_USEFLAG_H ZDB-1-SDJ GBV_NL_ARTICLE AR 79 1993 1-4 109-113 |
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(DE-627)NLEJ180792571 (DE-599)GBVNLZ180792571 DE-627 ger DE-627 rakwb eng Classical and quantum dynamics of the impulsively driven hydrogen atom 1993 nicht spezifiziert zzz rdacontent nicht spezifiziert z rdamedia nicht spezifiziert zu rdacarrier We investigate the classical and quantum dynamics of the hydrogen atom in a Rydberg state subject to a sequence of periodic and random pulses. One goal of this study is to test the validity of classical electron transport theories. We analyze the critical momentum transfer for which 10% of the Rydberg atoms are ionized after a large number of pulses as a function of the frequency of the perturbation. The quantum mechanical results for a periodic sequence of pulses exhibit clear structures which are not present in a classical simulation. These structures are shown to vanish for the case of stochastic pulses for which agreement is obtained between the classical and quantum mechanical results. The dynamics of the quantum mechanical periodic system is analyzed in terms of quasi-eigenstates of the period-one time evolution operator. Elsevier Journal Backfiles on ScienceDirect 1907 - 2002 Melles, M. oth Reinhold, C.O. oth Burgdorfer, J. oth in Nuclear Inst. and Methods in Physics Research, B Amsterdam : Elsevier 79(1993), 1-4, Seite 109-113 (DE-627)NLEJ177059540 (DE-600)1466524-4 0168-583X nnns volume:79 year:1993 number:1-4 pages:109-113 http://linkinghub.elsevier.com/retrieve/pii/0168-583X(93)95299-K GBV_USEFLAG_H ZDB-1-SDJ GBV_NL_ARTICLE AR 79 1993 1-4 109-113 |
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(DE-627)NLEJ180792571 (DE-599)GBVNLZ180792571 DE-627 ger DE-627 rakwb eng Classical and quantum dynamics of the impulsively driven hydrogen atom 1993 nicht spezifiziert zzz rdacontent nicht spezifiziert z rdamedia nicht spezifiziert zu rdacarrier We investigate the classical and quantum dynamics of the hydrogen atom in a Rydberg state subject to a sequence of periodic and random pulses. One goal of this study is to test the validity of classical electron transport theories. We analyze the critical momentum transfer for which 10% of the Rydberg atoms are ionized after a large number of pulses as a function of the frequency of the perturbation. The quantum mechanical results for a periodic sequence of pulses exhibit clear structures which are not present in a classical simulation. These structures are shown to vanish for the case of stochastic pulses for which agreement is obtained between the classical and quantum mechanical results. The dynamics of the quantum mechanical periodic system is analyzed in terms of quasi-eigenstates of the period-one time evolution operator. Elsevier Journal Backfiles on ScienceDirect 1907 - 2002 Melles, M. oth Reinhold, C.O. oth Burgdorfer, J. oth in Nuclear Inst. and Methods in Physics Research, B Amsterdam : Elsevier 79(1993), 1-4, Seite 109-113 (DE-627)NLEJ177059540 (DE-600)1466524-4 0168-583X nnns volume:79 year:1993 number:1-4 pages:109-113 http://linkinghub.elsevier.com/retrieve/pii/0168-583X(93)95299-K GBV_USEFLAG_H ZDB-1-SDJ GBV_NL_ARTICLE AR 79 1993 1-4 109-113 |
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(DE-627)NLEJ180792571 (DE-599)GBVNLZ180792571 DE-627 ger DE-627 rakwb eng Classical and quantum dynamics of the impulsively driven hydrogen atom 1993 nicht spezifiziert zzz rdacontent nicht spezifiziert z rdamedia nicht spezifiziert zu rdacarrier We investigate the classical and quantum dynamics of the hydrogen atom in a Rydberg state subject to a sequence of periodic and random pulses. One goal of this study is to test the validity of classical electron transport theories. We analyze the critical momentum transfer for which 10% of the Rydberg atoms are ionized after a large number of pulses as a function of the frequency of the perturbation. The quantum mechanical results for a periodic sequence of pulses exhibit clear structures which are not present in a classical simulation. These structures are shown to vanish for the case of stochastic pulses for which agreement is obtained between the classical and quantum mechanical results. The dynamics of the quantum mechanical periodic system is analyzed in terms of quasi-eigenstates of the period-one time evolution operator. Elsevier Journal Backfiles on ScienceDirect 1907 - 2002 Melles, M. oth Reinhold, C.O. oth Burgdorfer, J. oth in Nuclear Inst. and Methods in Physics Research, B Amsterdam : Elsevier 79(1993), 1-4, Seite 109-113 (DE-627)NLEJ177059540 (DE-600)1466524-4 0168-583X nnns volume:79 year:1993 number:1-4 pages:109-113 http://linkinghub.elsevier.com/retrieve/pii/0168-583X(93)95299-K GBV_USEFLAG_H ZDB-1-SDJ GBV_NL_ARTICLE AR 79 1993 1-4 109-113 |
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(DE-627)NLEJ180792571 (DE-599)GBVNLZ180792571 DE-627 ger DE-627 rakwb eng Classical and quantum dynamics of the impulsively driven hydrogen atom 1993 nicht spezifiziert zzz rdacontent nicht spezifiziert z rdamedia nicht spezifiziert zu rdacarrier We investigate the classical and quantum dynamics of the hydrogen atom in a Rydberg state subject to a sequence of periodic and random pulses. One goal of this study is to test the validity of classical electron transport theories. We analyze the critical momentum transfer for which 10% of the Rydberg atoms are ionized after a large number of pulses as a function of the frequency of the perturbation. The quantum mechanical results for a periodic sequence of pulses exhibit clear structures which are not present in a classical simulation. These structures are shown to vanish for the case of stochastic pulses for which agreement is obtained between the classical and quantum mechanical results. The dynamics of the quantum mechanical periodic system is analyzed in terms of quasi-eigenstates of the period-one time evolution operator. Elsevier Journal Backfiles on ScienceDirect 1907 - 2002 Melles, M. oth Reinhold, C.O. oth Burgdorfer, J. oth in Nuclear Inst. and Methods in Physics Research, B Amsterdam : Elsevier 79(1993), 1-4, Seite 109-113 (DE-627)NLEJ177059540 (DE-600)1466524-4 0168-583X nnns volume:79 year:1993 number:1-4 pages:109-113 http://linkinghub.elsevier.com/retrieve/pii/0168-583X(93)95299-K GBV_USEFLAG_H ZDB-1-SDJ GBV_NL_ARTICLE AR 79 1993 1-4 109-113 |
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We investigate the classical and quantum dynamics of the hydrogen atom in a Rydberg state subject to a sequence of periodic and random pulses. One goal of this study is to test the validity of classical electron transport theories. We analyze the critical momentum transfer for which 10% of the Rydberg atoms are ionized after a large number of pulses as a function of the frequency of the perturbation. The quantum mechanical results for a periodic sequence of pulses exhibit clear structures which are not present in a classical simulation. These structures are shown to vanish for the case of stochastic pulses for which agreement is obtained between the classical and quantum mechanical results. The dynamics of the quantum mechanical periodic system is analyzed in terms of quasi-eigenstates of the period-one time evolution operator. |
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We investigate the classical and quantum dynamics of the hydrogen atom in a Rydberg state subject to a sequence of periodic and random pulses. One goal of this study is to test the validity of classical electron transport theories. We analyze the critical momentum transfer for which 10% of the Rydberg atoms are ionized after a large number of pulses as a function of the frequency of the perturbation. The quantum mechanical results for a periodic sequence of pulses exhibit clear structures which are not present in a classical simulation. These structures are shown to vanish for the case of stochastic pulses for which agreement is obtained between the classical and quantum mechanical results. The dynamics of the quantum mechanical periodic system is analyzed in terms of quasi-eigenstates of the period-one time evolution operator. |
abstract_unstemmed |
We investigate the classical and quantum dynamics of the hydrogen atom in a Rydberg state subject to a sequence of periodic and random pulses. One goal of this study is to test the validity of classical electron transport theories. We analyze the critical momentum transfer for which 10% of the Rydberg atoms are ionized after a large number of pulses as a function of the frequency of the perturbation. The quantum mechanical results for a periodic sequence of pulses exhibit clear structures which are not present in a classical simulation. These structures are shown to vanish for the case of stochastic pulses for which agreement is obtained between the classical and quantum mechanical results. The dynamics of the quantum mechanical periodic system is analyzed in terms of quasi-eigenstates of the period-one time evolution operator. |
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