The stochastic limit of quantum theory suggests a new, constructive, approach to nonequilibrium phenomena. We illustrate this approach when considering the interaction of 3-level system with a quantum field in a nonequilibrium state. We describe a class of states of the quantum field for which a stationary state drives the system to an inversely populated state. We find that the quotient of the population of the energy levels in the simplest case is described by the double Einstein formula which involves products of two Einstein emis-sion/absorption factors. Emission and absorption of radiation by 3-level atom in nonequilibrium stationary state is described.

Accardi, L., Imafuku, K., Kozyrev, S.v. (2003). Interaction of 3-level atom with radiation. OPTICS AND SPECTROSCOPY, 94(6), 904-910 [10.1134/1.1586742].

Interaction of 3-level atom with radiation

ACCARDI, LUIGI;
2003-01-01

Abstract

The stochastic limit of quantum theory suggests a new, constructive, approach to nonequilibrium phenomena. We illustrate this approach when considering the interaction of 3-level system with a quantum field in a nonequilibrium state. We describe a class of states of the quantum field for which a stationary state drives the system to an inversely populated state. We find that the quotient of the population of the energy levels in the simplest case is described by the double Einstein formula which involves products of two Einstein emis-sion/absorption factors. Emission and absorption of radiation by 3-level atom in nonequilibrium stationary state is described.
2003
Pubblicato
Rilevanza internazionale
Articolo
Esperti anonimi
Settore MAT/06 - PROBABILITA' E STATISTICA MATEMATICA
English
Preprint Volterra N. 473 (2001) (Doppio Preprint); Preprint Volterra N. 520 July (2002)
Accardi, L., Imafuku, K., Kozyrev, S.v. (2003). Interaction of 3-level atom with radiation. OPTICS AND SPECTROSCOPY, 94(6), 904-910 [10.1134/1.1586742].
Accardi, L; Imafuku, K; Kozyrev, Sv
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Utilizza questo identificativo per citare o creare un link a questo documento: https://hdl.handle.net/2108/82588
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