挤光

M. Teich
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引用次数: 0

摘要

非经典光的产生最近受到了极大的关注,因为它的三种形式现在已经在实验室中被观察到:反束光、光子数压缩(或亚泊松)光和正交压缩光。在任何给定的光源中,这些特性可以(但不必)相互伴随。非经典光已经在实验中使用共振荧光、弗兰克-赫兹效应、参数相互作用离子和半导体光源产生。它可能有助于为各种物理和生物过程提供新的见解,并在光波通信等应用中发挥作用。一些特点,产生的方法,和预期的用途压缩光将被解决。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Squeezed Light
The generation of nonclassical light has recently received a great deal of attention because three forms of it have now been observed in the laboratory: antibunched light, photon-number-squeezed (or sub-Poisson) light, and quadrature-squeezed light. These characteristics may, but need not, accompany each other in any given light source. Nonclassical light has been produced in experiments using resonance fluorescence, the Franck-Hertz effect, parametric interact ions, and semiconductor light sources. It is likely to be useful in providing new insights in various physical and biological processes, and in applications such as lightwave communications. Some of the characteristics, methods of generation, and expected uses of squeezed light will be addressed.
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