Comparing the Ratchet Effects of Cold Atoms in Periodically Symmetric and Asymmetric Optical Potentials

N. A. Arreyndip, Kenfack Anatole
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Abstract

We consider a particle in a spatial symmetric/asymmetric potential driven by time periodic bichromatic AC fields of ratchet type. The associated time-dependent Schrodinger equation is conveniently tackled with the Floquet theory. We next proceed to investigate the ratchet effect induced by the driver, comparing the symmetric with the asymmetric cases. It turns out that the current in the asymmetric case is stronger than that of the symmetric one. Besides, we also investigate the case where the driver is a delta kicked acting on our spatial potential with more emphasis on its chaotic behaviour. Here we check that the current emerges as the phase space is mixed and that the system with asymmetric spatial potential becomes more chaotic than the symmetric one at low kicking strength.
周期对称和非对称光势中冷原子棘轮效应的比较
我们考虑一个粒子在棘轮型时间周期双色交流场驱动下的空间对称/不对称势。相关的时变薛定谔方程可以方便地用Floquet理论处理。接下来,我们将进一步研究由驾驶员引起的棘轮效应,并比较对称和非对称情况。事实证明,不对称情况下的电流比对称情况下的电流强。此外,我们还研究了驾驶员是作用于我们的空间势的delta踢腿的情况,更强调其混沌行为。在这里,我们检查了电流在相空间混合时出现,并且具有非对称空间势的系统在低踢动强度下比对称系统变得更加混乱。
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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