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首页> 外文期刊>Annals of Physics >The theory of a general quantum system interacting with a linear dissipative system (Reprinted from Annals of Physics, vol 24, pg 118-173, 1963)
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The theory of a general quantum system interacting with a linear dissipative system (Reprinted from Annals of Physics, vol 24, pg 118-173, 1963)

机译:普通量子系统与线性耗散系统相互作用的理论(转载自《物理学年鉴》,第24卷,第118-173页,1963年)

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A formalism has been developed, using Feynman's space-time formulation of nonrelativistic quantum mechanics whereby the behavior of a system of interest, which is coupled to other external quantum systems, may be calculated in terms of its own variables only. It is shown that the effect of the external systems in such a formalism can always be included in a general class of functionals ( influence functionals) of the coordinates of the system only. The proper ties of influence functionals for general systems are examined. Then, specific forms of influence functionals representing the effect of definite and random classical forces, linear dissipative systems at finite temperatures, and combinations of these are analyzed in detail. The linear system analysis is first done for perfectly linear systems composed of combinations of harmonic oscillators, loss bring introduced by continuous distributions of oscillators. Then approximately linear systems and restrictions necessary for the linear behavior are considered. Influence functionals for all linear systems are shown to have the same Term in terms of their classical response Functions. In addition, a fluctuation-dissipation theorem is derived relating temperature and dissipation of the linear system to a Fluctuating classical potential acting on the system of interest which reduces to the Nyquist-Johnson relation for noise in the case of electric circuits. Sample calculations of transition probabilities for the spontaneous emission of an atom in free space and in a cavity are made. Finally, a theorem is proved showing that within the requirements of linearity all sources of noise or quantum fluctuation introduced by maser-type amplification devices are accounted for by a classical calculation of the characteristics of the maser. (C) 1963 Academic Press. [References: 24]
机译:使用费恩曼的非相对论量子力学的时空公式,已经发展出形式主义,从而可以仅根据其自身变量来计算与其他外部量子系统耦合的感兴趣系统的行为。结果表明,外部系统在这种形式主义中的作用总是可以仅包括在系统坐标的一般功能类(影响功能)中。检验了影响功能对一般系统的正确联系。然后,详细分析了影响功能的特定形式,这些形式代表了确定的和随机的经典作用力,有限温度下的线性耗散系统以及它们的组合。首先对由谐波振荡器的组合组成的完美线性系统进行线性系统分析,损耗是由连续分布的振荡器引起的。然后考虑近似线性系统和线性行为所必需的限制。所有线性系统的影响函数在其经典响应函数方面均显示为相同的项。另外,推导了一个波动耗散定理,该波动耗散定理将线性系统的温度和耗散与作用在目标系统上的波动经典势相关,在电路情况下,噪声降为奈奎斯特-约翰逊关系。进行了原子在自由空间和空腔中自发发射的跃迁概率的样本计算。最后,证明了一个定理,该定理表明,在线性要求内,由maser型放大设备引入的所有噪声或量子涨落源均通过对maser特性的经典计算来解决。 (C)1963年学术出版社。 [参考:24]

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