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纳米光机械系统中声子输运的合成规范场

Synthetic gauge fields for phonon transport in a nano-optomechanical system.

作者信息

Mathew John P, Pino Javier Del, Verhagen Ewold

机构信息

Center for Nanophotonics, AMOLF, Amsterdam, The Netherlands.

出版信息

Nat Nanotechnol. 2020 Mar;15(3):198-202. doi: 10.1038/s41565-019-0630-8. Epub 2020 Feb 3.

DOI:10.1038/s41565-019-0630-8
PMID:32015506
Abstract

Gauge fields in condensed matter physics give rise to nonreciprocal and topological transport phenomena and exotic electronic states. Nanomechanical systems are applied as sensors and in signal processing, and feature strong nonlinearities. Gauge potentials acting on such systems could induce quantum Hall physics for phonons at the nanoscale. Here, we demonstrate a magnetic gauge field for nanomechanical vibrations in a scalable, on-chip optomechanical system. We induce the gauge field through multi-mode optomechanical interactions, which have been proposed as a resource for the necessary breaking of time-reversal symmetry. In a dynamically modulated nanophotonic system, we observe how radiation pressure forces mediate phonon transport between resonators of different frequencies. The resulting controllable interaction, which is characterized by a high rate and nonreciprocal phase, mimics the Aharonov-Bohm effect. We show that the introduced scheme does not require high-quality cavities, such that it allows exploring topological acoustic phases in many-mode systems resilient to realistic disorder.

摘要

凝聚态物理中的规范场会引发非互易和拓扑输运现象以及奇异电子态。纳米机械系统被用作传感器并应用于信号处理,且具有很强的非线性。作用于此类系统的规范势可在纳米尺度上诱发声子的量子霍尔物理效应。在此,我们在一个可扩展的片上光机械系统中展示了用于纳米机械振动的磁规范场。我们通过多模光机械相互作用来诱发规范场,这种相互作用已被提议作为打破时间反演对称性的必要资源。在一个动态调制的纳米光子系统中,我们观察到辐射压力如何介导不同频率谐振器之间的声子输运。由此产生的可控相互作用,其特征在于高速率和非互易相位,模拟了阿哈罗诺夫 - 玻姆效应。我们表明,所引入的方案不需要高品质腔,从而能够在对实际无序具有弹性的多模系统中探索拓扑声学相。

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