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Amorphous optical coatings of present gravitational-wave interferometers*

机译:基波干涉仪的无定形光学涂层*

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摘要

We report on the results of an extensive campaign of optical and mechanical characterization of the ion-beam sputtered oxide layers (Ta2O5, TiO2, Ta2O5-TiO2, SiO2) within the high-reflection coatings of the Advanced LIGO, Advanced Virgo and KAGRA gravitational-wave detectors: refractive index, thickness, optical absorption, composition, density, internal friction and elastic constants have been measured; the impact of deposition rate and post-deposition annealing on coating internal friction has been assessed. For Ta2O5 and SiO2 layers, coating internal friction increases with the deposition rate, whereas the annealing treatment either erases or largely reduces the gap between samples with different deposition history. For Ta2O5-TiO2 layers, the reduction of internal friction due to TiO2 doping becomes effective only if coupled with annealing. All measured samples showed a weak dependence of internal friction on frequency [phi(c)(f) = af(b), with -0.208 < b < 0.140 depending on the coating material considered]. SiO2 films showed a mode-dependent loss branching, likely due to spurious losses at the coated edge of the samples. The reference loss values of the Advanced LIGO and Advanced Virgo input (ITM) and end (ETM) mirror HR coatings have been updated by using our estimated value of Young's modulus of Ta2O5-TiO2 layers (120 GPa) and are about 10% higher than previous estimations.
机译:我们报告了先进的Ligo,高级处女座和Kagra引力的高反射涂层内的离子束溅射氧化物层(Ta2O5,TiO2,Ta2O5-TiO2,SiO2)的广泛光学和力学表征广泛运动的结果。波检测器:已经测量折射率,厚度,光学吸收,组成,密度,内部摩擦和弹性常数;已经评估了沉积速率和沉积后退火对涂层内摩擦的影响。对于Ta2O5和SiO 2层,涂层内部摩擦随着沉积速率而增加,而退火处理擦除或大幅降低具有不同沉积历史的样品之间的间隙。对于Ta2O5-TiO2层,仅当加速退火时,由于TiO 2掺杂引起的内部摩擦的降低。所有测量的样品均显示出内部摩擦对频率[PHI(C)(F)= AF(B)的弱依赖性,所述-0.208

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