Bloch–Landau–Zener dynamics induced by a synthetic field in a photonic quantum walk

A. D’Errico, R. Barboza, R. Tudor, A. Dauphin, P. Massignan, L. Marrucci, F. Cardano
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引用次数: 11

Abstract

Quantum walks are processes that model dynamics in coherent systems. Their experimental implementations proved key to unveil novel phenomena in Floquet topological insulators. Here we realize a photonic quantum walk in the presence of a synthetic gauge field, which mimics the action of an electric field on a charged particle. By tuning the energy gaps between the two quasi-energy bands, we investigate intriguing system dynamics characterized by the interplay between Bloch oscillations and Landau-Zener transitions. When both gaps at quasi-energy values 0 and $\pi$ are vanishingly small, the Floquet dynamics follows a ballistic spreading.
光子量子行走中合成场诱导的布洛赫-朗多-齐纳动力学
量子行走是在相干系统中模拟动力学的过程。他们的实验实现证明了揭示Floquet拓扑绝缘体新现象的关键。在这里,我们实现了在一个合成规范场存在下的光子量子行走,它模拟了电场对带电粒子的作用。通过调整两个准能带之间的能量间隙,我们研究了以布洛赫振荡和朗道-齐纳跃迁之间的相互作用为特征的有趣的系统动力学。当准能值0和$\pi$处的间隙都很小时,Floquet动力学遵循弹道扩散。
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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