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首页> 外文期刊>Physical Review, A. Atomic, molecular, and optical physics >Nonlinear optical spectroscopy of single, few, and many molecules: Nonequilibrium Green's function QED approach
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Nonlinear optical spectroscopy of single, few, and many molecules: Nonequilibrium Green's function QED approach

机译:单次,少数和许多分子的非线性光学光谱:非纤维纤维函数QED方法

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摘要

Nonlinear optical signals from an assembly of N noninteracting particles consist of an incoherent and a coherent component, whose magnitudes scale similar to N and similar to N(N-1), respectively. A unified microscopic description of both types of signals is developed using a quantum electrodynamical (QED) treatment of the optical fields. Closed nonequilibrium Green's function expressions are derived that incorporate both stimulated and spontaneous processes. General (n+1)-wave mixing experiments are discussed as an example of spontaneously generated signals. When performed on a single particle, such signals cannot be expressed in terms of the nth order polarization, as predicted by the semiclassical theory. Stimulated processes are shown to be purely incoherent in nature. Within the QED framework, heterodyne-detected wave mixing signals are simply viewed as incoherent stimulated emission, whereas homodyne signals are generated by coherent spontaneous emission.
机译:来自N个非换体颗粒的组件的非线性光学信号由不相干和相干组分组成,其幅度标度分别类似于N和类似N(N-1)。 使用光场的量子电动电动(QED)处理来开发两种类型信号的统一微观描述。 封闭的非Quilibrium绿色的函数表达式被推导出来,其包括刺激和自发过程。 将军(n + 1) - 波和混合实验被讨论为自发产生的信号的示例。 当在单个粒子上执行时,就通过半定类理论预测的第n个阶偏振来表达这种信号。 刺激的过程被证明是纯粹的自然界的。 在QED框架内,简单地观察到外差的波混合信号被视为不连贯的刺激发射,而杂差信号由相干的自发发射产生。

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