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Spontaneous emission of the non-Wiener type

机译:非维纳型自发发射

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摘要

The spontaneous emission of a quantum particle and superradiation of an ensemble of identical quantum particles in a vacuum electromagnetic field with zero photon density are examined under the conditions of significant Stark particle and field interaction. New fundamental effects are established: suppression of spontaneous emission by the Stark interaction, an additional "decay" shift in energy of the decaying level as a consequence of Stark interaction unrelated to the Lamb and Stark level shifts, excitation conservation phenomena in a sufficiently dense ensemble of identical particles and suppression of superradiaton in the decay of an ensemble of excited quantum particles of a certain density. The main equations describing the emission processes under conditions of significant Stark interaction are obtained in the effective Hamiltonian representation of quantum stochastic differential equations. It is proved that the Stark interaction between a single quantum particle and a broadband electromagnetic field is represented as a quantum Poisson process and the stochastic differential equations are of the non-Wiener (generalized Langevin) type. From the examined case of spontaneous emission of a quantum particle, the main rules are formulated for studying open systems in the effective Hamiltonian representation.
机译:在明显的Stark粒子和场相互作用的条件下,研究了真空电磁场中光子密度为零的量子粒子的自发发射和相同量子粒子的整体的超辐射。建立了新的基本效果:通过Stark相互作用抑制自发发射,由于Stark相互作用而导致的衰变能级的附加“衰减”位移与Lamb和Stark能级位移无关,在足够密集的集合中激发守恒现象一定密度的激发量子粒子集合的衰变中相同粒子的分解和超辐射的抑制。在量子随机微分方程的有效汉密尔顿表示中,获得了描述在明显斯塔克相互作用条件下发射过程的主要方程。证明了单个量子粒子与宽带电磁场之间的Stark相互作用被表示为量子泊松过程,并且随机微分方程是非Wiener(广义Langevin)类型的。从所研究的量子粒子自发发射的情况出发,制定了研究有效汉密尔顿表示中的开放系统的主要规则。

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