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Parametric oscillatory instability in LIGO interferometer

机译:Ligo干涉仪中的参数振荡不稳定

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We present the analysis of a nonlinear effect of parametric oscillatory instability in power recycled LIGO interferometer with Fabry-Perot cavities in the arms. The basis for this effect is the excitation of the additional Stokes optical mode and the mirror elastic mode when the optical energy stored in the main Fabry-Perot cavity mode exceeds the certain threshold. We demonstrate that in the resonance case the parametric oscillatory instability will take place at the energy stored in the cavity of about five orders smaller than one planned for LIGO-II interferometer. The presence of anti-Stokes modes can depress parametric oscillatory instability. However, it is very likely that the anti-Stokes modes will not compensate the parametric oscillatory instability completely because of the existence of the mode combinations which interact with each other quite strongly.
机译:我们介绍了在动力再循环的Ligo干涉仪中参数振荡不稳定性的非线性效应分析。这种效果的基础是当存储在主法布里 - 珀罗腔模式中的光能超过某个阈值时,该效果的求和光学模式和镜子弹性模式的激发。我们证明,在共振案例中,参数振荡不稳定性将在储存在腔内的能量下,小于用于Ligo-II干涉仪的一个小于一个规划的腔。反斯托克斯模式的存在可以按下参数振荡不稳定。然而,由于彼此相互作用的模式组合存在,因此抗风型模式很可能不会完全补偿参数振荡不稳定。

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