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首页> 外文期刊>Physical Review, A. Atomic, molecular, and optical physics >Observation of enhanced optical spring damping in a macroscopic mechanical resonator and application for parametric instability control in advanced gravitational-wave detectors
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Observation of enhanced optical spring damping in a macroscopic mechanical resonator and application for parametric instability control in advanced gravitational-wave detectors

机译:宏观机械谐振器中增强光学弹簧阻尼的观察及在高级引力波检测器中的参数不稳定控制应用

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摘要

We show that optical spring damping in an optomechanical resonator can be enhanced by injecting a phase delay in the laser frequency-locking servo to rotate the real and imaginary components of the optical spring constant. This enhances damping at the expense of optical rigidity. We demonstrate enhanced parametric damping which reduces the Q factor of a 0.1-kg-scale resonator from 1.3 x 10(5) to 6.5 x 10(3). By using this technique adequate optical spring damping can be obtained to damp parametric instability predicted for advanced laser interferometer gravitational-wave detectors.
机译:我们表明,通过在激光频率锁定伺服中注入相位延迟来旋转光学弹簧常数的实部和虚部,可以提高光学力学谐振器中的光学弹簧阻尼。 这增强了光学刚性的抵抗。 我们展示了增强的参数阻尼,从1.3×10(5)到6.5×10(3)中减少了0.1kg级谐振器的Q系数。 通过使用该技术,可以获得足够的光学弹簧阻尼,以便为高级激光干涉仪重力波检测器预测的参数不稳定。

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