Time-Domain Quantum Maxwell Solver

D. Na, W. Chew
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Abstract

We present finite-difference time-domain schemes to numerically solve quantum Maxwell's equations for arbitrary inhomogeneous media based on the macroscopic theory on quantum electrodynamics. In the Heisenberg picture, quantum Maxwell dynamical operators are expanded by a set of ladder operators defined in the coordinate space while non-orthogonal basis corresponding to a new long-range propagators different from the classical Green's function. The proposed time-domain quantum Maxwell solver is useful to study the local nature of quantum information propagation such as virtual photons or near single photon sources. We provide numerical examples associated with two photon interference occurring in a quantum beam splitter, called Hong-Ou-Mandel effect. Moreover, we emulate the recent interesting experiment on quantum interference across an astronomical distance [1].
时域量子麦克斯韦求解器
基于量子电动力学的宏观理论,提出了求解任意非均匀介质的量子麦克斯韦方程组的时域有限差分格式。在Heisenberg图中,量子麦克斯韦动力学算符由一组在坐标空间中定义的阶梯算符展开,而非正交基对应于一种不同于经典格林函数的新型远程传播子。所提出的时域量子麦克斯韦求解器对于研究虚光子或近单光子源等量子信息传播的局域性质是有用的。我们提供了与量子分束器中发生的双光子干涉有关的数值例子,称为Hong-Ou-Mandel效应。此外,我们还模拟了最近关于跨越天文距离的量子干涉的有趣实验[1]。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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