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四端波导系统中的双光子散射与关联

Two-photon scattering and correlation in a four-terminal waveguide system.

作者信息

Hu Qingmei, Dong Junhua, Yin Jianbo, Zou Bingsuo, Zhang Yongyou

出版信息

Opt Express. 2021 Oct 25;29(22):35664-35677. doi: 10.1364/OE.438840.

Abstract

Scattering and correlation properties of a two-photon (TP) pulse are studied in a four-terminal waveguide system, i.e., two one-dimensional waveguides connected by a Jaynes-Cummings emitter (JCE). The wave function approach is utilized to exactly calculate the real-time dynamic evolution of the TP transport. When the width of the incident TP Gaussian pulse is much larger than the photon wavelength, the TP transmission spectra approach that of the corresponding single photon cases and are almost independent of the pulse width. On the contrary, as the pulse width is comparable to the photon wavelength, the TP transmission and correlation both show strong dependence on the pulse width. The resonant scattering due to the JCE and the photon interference together determine the TP correlation. When the distance between the TPs is small, the TP correlations between any two terminals for the scattered TP pulse are much different from those for the incident TP pulse and therefore, such a four-terminal waveguide system provides a way to control the TP correlation.

摘要

在一个四端波导系统中研究了双光子(TP)脉冲的散射和关联特性,该系统即由一个Jaynes-Cummings发射器(JCE)连接的两个一维波导。利用波函数方法精确计算了TP传输的实时动态演化。当入射TP高斯脉冲的宽度远大于光子波长时,TP传输光谱接近相应单光子情况的光谱,并且几乎与脉冲宽度无关。相反,当脉冲宽度与光子波长可比时,TP传输和关联都强烈依赖于脉冲宽度。由JCE引起的共振散射和光子干涉共同决定了TP关联。当TP之间的距离很小时,散射TP脉冲在任意两个终端之间的TP关联与入射TP脉冲的关联有很大不同,因此,这样的四端波导系统提供了一种控制TP关联的方法。

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