Classical analogues of a quantum system in spatial and temporal domains: A probability amplitude approach

P. Panchadhyayee, Nityananda Das
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Abstract

Abstract We have simulated the similar features of the well-known classical phenomena in quantum domain under the formalism of probability amplitude method. The identical pattern of interference fringes of a Fabry–Perot interferometer (especially on reflection mode) is obtained through the power-broadened spectral line shape of the population distribution in the excited state with careful delineation of a coherently driven two-level atomic model. In a unit wavelength domain, such pattern can be substantially modified by controlling typical spatial field arrangement in one and two dimensions, which is found complementary to the findings of recent research on atom localization in sub-wavelength domain. The spatial dependence of temporal dynamics has also been studied at a particular condition, which is equivalent to that could be obtained under Raman–Nath diffraction controlled by spatial phase.
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时空域量子系统的经典类似物:概率振幅方法
在概率振幅法的形式化下,模拟了量子领域中著名经典现象的相似特征。通过对相干驱动二能级原子模型的精细描述,得到了激发态居群分布的功率展宽谱线形状,得到了法布里-珀罗干涉仪干涉条纹的相同图样(特别是在反射模式下)。在单位波长域中,这种模式可以通过控制一维和二维的典型空间场排列而得到实质性的改变,这与最近在亚波长域中原子局域化的研究结果是互补的。在特定条件下研究了时间动力学的空间依赖性,其结果与空间相位控制下的拉曼-纳特衍射的结果相当。
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Cogent Physics
Cogent Physics PHYSICS, MULTIDISCIPLINARY-
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