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Invited Article: CO_2 laser production of fused silica fibers for use in interferometric gravitational wave detector mirror suspensions

机译:特邀文章:CO_2激光生产熔融石英纤维,用于干涉重力波检测器镜悬架

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摘要

In 2000 the first mirror suspensions to use a quasi-monolithic final stage were installed at the GEO600 detector site outside Hannover, pioneering the use of fused silica suspension fibers in long baseline interferometric detectors to reduce suspension thermal noise. Since that time, development of the production methods of fused silica fibers has continued. We present here a review of a novel CO_2 laser-based fiber pulling machine developed for the production of fused silica suspensions for the next generation of interferometric gravitational wave detectors and for use in experiments requiring low thermal noise suspensions. We discuss tolerances, strengths, and thermal noise performance requirements for the next generation of gravitational wave detectors. Measurements made on fibers produced using this machine show a 0.8% variation in vertical stiffness and 0.05% tolerance on length, with average strengths exceeding 4 GPa, and mechanical dissipation which meets the requirements for Advanced LIGO thermal noise performance.
机译:2000年,在汉诺威郊外的GEO600检测器现场安装了首个使用准整体式最后阶段的镜面悬挂,这是在长基线干涉检测器中率先使用熔融石英悬浮纤维降低悬挂热噪声的先驱。从那时起,熔融石英纤维的生产方法的开发一直在继续。我们在此介绍一种新颖的基于CO_2激光的光纤拉丝机,该拉丝机开发用于生产熔融石英悬浮液,用于下一代干涉重力波检测器,并用于需要低热噪声悬浮液的实验中。我们讨论了下一代重力波探测器的公差,强度和热噪声性能要求。使用该机器生产的纤维进行的测量显示,垂直刚度变化0.8%,长度公差为0.05%,平均强度超过4 GPa,机械耗散满足高级LIGO热噪声性能的要求。

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