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Continuous Stern-Gerlach effect and the quantum-state diffusion model of state reduction

Alber, G. ; Steimle, T. (1996)
Continuous Stern-Gerlach effect and the quantum-state diffusion model of state reduction.
In: Physical Review A, 53 (4)
doi: 10.1103/PhysRevA.53.1982
Artikel, Bibliographie

Kurzbeschreibung (Abstract)

A quantum-mechanical description of the continuous Stern-Gerlach effect is developed in which environmental effects, as well as effects arising from the continuous measurement of the electronic z motion, are taken into account. Master equations are presented that describe the behavior of a quantum statistical ensemble of continuous measurement processes. On the basis of these master equations and with the help of the quantum-state diffusion model a theoretical description of individual continuous measurement processes is developed.

Typ des Eintrags: Artikel
Erschienen: 1996
Autor(en): Alber, G. ; Steimle, T.
Art des Eintrags: Bibliographie
Titel: Continuous Stern-Gerlach effect and the quantum-state diffusion model of state reduction
Sprache: Englisch
Publikationsjahr: 1 April 1996
Verlag: APS Physics
Titel der Zeitschrift, Zeitung oder Schriftenreihe: Physical Review A
Jahrgang/Volume einer Zeitschrift: 53
(Heft-)Nummer: 4
DOI: 10.1103/PhysRevA.53.1982
URL / URN: https://journals.aps.org/pra/abstract/10.1103/PhysRevA.53.19...
Kurzbeschreibung (Abstract):

A quantum-mechanical description of the continuous Stern-Gerlach effect is developed in which environmental effects, as well as effects arising from the continuous measurement of the electronic z motion, are taken into account. Master equations are presented that describe the behavior of a quantum statistical ensemble of continuous measurement processes. On the basis of these master equations and with the help of the quantum-state diffusion model a theoretical description of individual continuous measurement processes is developed.

Zusätzliche Informationen:

Art.No.: 1982

Fachbereich(e)/-gebiet(e): 05 Fachbereich Physik
05 Fachbereich Physik > Institut für Angewandte Physik
05 Fachbereich Physik > Institut für Angewandte Physik > Theoretische Quantenphysik
Hinterlegungsdatum: 28 Apr 2022 11:14
Letzte Änderung: 10 Mai 2022 07:30
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