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Even nanomechanical modes transduced by integrated photonics

机译:甚至由集成光子转换的纳米力学模式

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摘要

We demonstrate the actuation and detection of even flexural vibrational modes of a doubly clamped nanomechanical resonator using an integrated photonics transduction scheme. The doubly clamped beam is formed by releasing a straight section of an optical racetrack resonator from the underlying silicon dioxide layer, and a step is fabricated in the substrate beneath the beam. The step causes uneven force and responsivity distribution along the device length, permitting excitation and detection of even modes of vibration. This is achieved while retaining transduction capability for odd modes. The devices are actuated via optical force applied with a pump laser. The displacement sensitivities of the first through third modes, as obtained from the thermomechanical noise floor, are 228 fm Hz~-(1/2), 153 fm Hz~-(1/2), and 112 fm Hz~-(1/2), respectively. The excitation efficiency for these modes is compared and modeled based on integration of the uneven forces over the mode shapes. While the excitation efficiency for the first three modes is approximately the same when the step occurs at about 38% of the beam length, the ability to tune the modal efficiency of transduction by choosing the step position is discussed. The overall optical force on each mode is approximately 0.4 pN μn~(-1) mW~-(-1), for an applied optical power of 0.07 mW. We show a potential application that uses the resonant frequencies of the first two vibrational modes of a buckled beam to measure the stress in the silicon device layer, estimated to be 106 MPa. We anticipate that the observation of the second mode of vibration using our integrated photonics approach will be useful in future mass sensing experiments.
机译:我们演示了使用集成的光子转换方案对双钳位纳米机械谐振器的甚至弯曲振动模式进行驱动和检测。通过从下面的二氧化硅层释放光学跑道共振器的笔直部分来形成双束束,并在束下面的基板中制造台阶。该台阶会引起沿设备长度方向的不均匀力和响应度分布,从而允许激发和检测均匀的振动模式。这是在保留奇数模式的传导能力的同时实现的。通过泵浦激光器施加的光学力来驱动设备。从热机械本底噪声获得的第一到第三模式的位移敏感度分别为228 fm Hz〜-(1/2),153 fm Hz〜-(1/2)和112 fm Hz〜-(1 / 2)。基于模式形状上的不均匀力的积分,对这些模式的激励效率进行了比较和建模。当阶跃发生在光束长度的约38%时,前三种模式的激发效率大致相同,但本文讨论了通过选择阶跃位置来调节转换模态效率的能力。对于0.07mW的施加光功率,每个模式上的总光学力约为0.4pNμn·(-1)mW·-(-1)。我们展示了一种潜在的应用,该应用使用弯曲梁的前两个振动模式的共振频率来测量硅器件层中的应力,估计为106 MPa。我们预计,使用我们的集成光子学方法观察第二种振动模式将对将来的质量传感实验有用。

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  • 来源
    《Applied Physics Letters》 |2016年第6期|061103.1-061103.5|共5页
  • 作者单位

    Department of Physics, University of Alberta, Edmonton T6G 2E1, Canada,National Institute for Nanotechnology, 11421 Saskatchewan Drive, Edmonton T6G 2M9, Canada;

    Department of Physics, University of Alberta, Edmonton T6G 2E1, Canada,National Institute for Nanotechnology, 11421 Saskatchewan Drive, Edmonton T6G 2M9, Canada,Department of Physics, Stockholm University, SE-106 91 Stockholm, Sweden;

    Department of Physics, University of Alberta, Edmonton T6G 2E1, Canada,National Institute for Nanotechnology, 11421 Saskatchewan Drive, Edmonton T6G 2M9, Canada;

    Department of Electrical Engineering, University of Alberta, Edmonton T6G 2V4, Canada;

    Department of Physics, University of Alberta, Edmonton T6G 2E1, Canada,National Institute for Nanotechnology, 11421 Saskatchewan Drive, Edmonton T6G 2M9, Canada;

  • 收录信息 美国《科学引文索引》(SCI);美国《工程索引》(EI);美国《生物学医学文摘》(MEDLINE);
  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类
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  • 入库时间 2022-08-18 03:14:34

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