On-chip optical non-reciprocity through a synthetic Hall effect for photons

arXiv: Optics Pub Date : 2020-10-21 DOI:10.1063/5.0034291
S. Kim, Donggyu B. Sohn, Christopher W. Peterson, G. Bahl
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引用次数: 10

Abstract

We demonstrate a synthetic Hall effect for light, using an acousto-optically modulated nanophotonic resonator chain. To produce this effect, we simultaneously generate the required synthetic electric field using temporal modulation, and the required synthetic magnetic field using spatial modulation of the resonator chain. We show how the combination of these synthetic fields transverse to the direction of light propagation can be used to produce non-reciprocal optical transmission, as a basis for new photonic and topological devices.
通过光子合成霍尔效应的片上光学非互易性
我们展示了光的合成霍尔效应,使用声光调制纳米光子谐振器链。为了产生这种效果,我们同时使用时间调制产生所需的合成电场,并使用谐振器链的空间调制产生所需的合成磁场。我们展示了这些合成场的横向光传播方向的组合如何用于产生非互反光传输,作为新的光子和拓扑器件的基础。
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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