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Time-reversal symmetry breaking with acoustic pumping of nanophotonic circuits

机译:用纳米光电电路声学泵浦的时间反转对称性

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摘要

Achieving non-reciprocal light propagation via stimuli that break time-reversal symmetry, without magneto-optics, remains a major challenge for integrated nanophotonic devices. Recently, optomechanical microsystems in which light and vibrational modes are coupled through ponderomotive forces have demonstrated strong non-reciprocal effects through a variety of techniques, but always using optical pumping. None of these approaches has demonstrated bandwidth exceeding that of the mechanical system, and all of them require optical power; these are both fundamental and practical issues. Here, we resolve both challenges by breaking time-reversal symmetry using a two-dimensional acoustic pump that simultaneously provides a non-zero overlap integral for light-sound interaction and also satisfies the necessary phase-matching. We use this technique to produce a non-reciprocal modulator (a frequency shifting isolator) by means of indirect interband scattering. We demonstrate mode conversion asymmetry up to 15 dB and efficiency as high as 17% over a bandwidth exceeding 1 GHz.
机译:通过刺激在没有磁光的刺激实现非互惠光传播,仍然是集成纳米光电装置的主要挑战。最近,光学机械微系统,其中光和振动模式通过锚组力耦合,通过各种技术证明了强的非互易效应,但总是使用光学泵浦。这些方法都没有显示出超过机械系统的带宽,并且它们中的所有方法都需要光功率;这些都是基本和实际的问题。这里,我们通过使用二维声学泵断开时间反转对称来解决两个挑战,所述二维声学泵同时提供用于光声相互作用的非零重叠积分,并且还满足必要的相位匹配。我们使用该技术通过间接的间接散射产生非互易调制器(频率变速器)。我们将模式转换不对称展示高达15 dB,并且在带宽超过1 GHz的带宽高达17%的效率。

著录项

  • 来源
    《Nature photonics》 |2018年第2期|共8页
  • 作者单位

    Univ Illinois Mech Sci &

    Engn Urbana IL 61801 USA;

    Univ Illinois Mech Sci &

    Engn Urbana IL 61801 USA;

    Univ Illinois Mech Sci &

    Engn Urbana IL 61801 USA;

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  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类 光学;
  • 关键词

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