分束器和干涉滤光器的量子态操作

IF 1.3 Q3 INSTRUMENTS & INSTRUMENTATION
Andre Vatarescu
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引用次数: 0

摘要

在诸如分束器或干涉滤光器之类的介电介质中,量子瑞利散射或自发发射的存在会阻止单个光子沿直线传播。由于光子的损耗,用酉变换对分束器进行建模在物理上是没有意义的。传统理论中缺失的其他元素是量子瑞利激发发射,它可以形成相同频率的光子群,以及原始参数晶体中不可避免的单光子参量放大。干涉滤光片通过多次内部反射干扰原始的单光子流,从而证实了扩散的光子群的存在,以延长相干时间。用统计集合的概率幅对单个、单个测量进行建模的方法会导致对实验结果的反直觉解释,应该用描述瞬时测量的纯状态来代替,这些瞬时测量的值随后被平均。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
The Quantum Regime Operation of Beam Splitters and Interference Filters
The presence of quantum Rayleigh scattering, or spontaneous emission, inside a dielectric medium such as a beam splitter or an interferometric filter prevents a single photon from propagating in a straight line. Modelling a beam splitter by means of a unitary transformation is physically meaningless because of the loss of photons. Additional missing elements from the conventional theory are the quantum Rayleigh-stimulated emission, which can form groups of photons of the same frequency, and the unavoidable parametric amplification of single photons in the original parame-tric crystal. An interference filter disturbs, through multiple internal reflections, the original stream of single photons, thereby confirming the existence of groups of photons being spread out to lengthen the coherence time. The approach of modelling individual, single measurements with probability amplitudes of a statistical ensemble leads to counterintuitive explanations of the experimental outcomes and should be replaced with pure states describing instantaneous measurements whose values are afterwards averaged.
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来源期刊
CiteScore
2.80
自引率
28.60%
发文量
27
审稿时长
11 weeks
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