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Mechanical bound state in the continuum for optomechanical microresonators

机译:光学机械微谐振器的连续性中的机械结合状态

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Clamping loss limits the quality factor of mechanical mode in the optomechanical resonators supported with the supporting stem. Using the mechanical bound state in the continuum (BIC), we have found that the mechanical clamping loss can be avoided. The mechanical quality factor of a microsphere could be achieved up to 108 for a specific radius of the stem, which forms a mechanical BIC with the combination of the symmetry protected mechanism and the single resonance mechanism. Such a mechanism is proved to be universal for different geometries and materials, thus can also be generalized to design high quality mechanical resonators.
机译:夹紧损耗限制了由支撑杆支撑的光机械谐振器中机械模式的品质因数。使用连续体中的机械束缚态(BIC),我们发现可以避免机械夹紧损失。对于茎的特定半径,微球的机械品质因数最高可达到108,这通过对称保护机制和单个共振机制的组合形成机械BIC。事实证明,这种机制对于不同的几何形状和材料是通用的,因此也可以推广到设计高质量的机械谐振器。

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