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Coming clean: understanding and mitigating optical contamination and laser induced damage in advanced LIGO

机译:清洁:了解和减轻先进LIGO中的光学污染和激光诱发的损坏

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摘要

The cleanliness of optical surfaces is of great concern as the Advanced Laser Interferometer Gravitational-Wave Observatory (LIGO) project transitions from installation to operation at full power. More particulates than expected were observed on and near the core optics as a result of assembly and installation work, prompting a re-evaluation of longheld contamination control practices. Even low particulate levels can potentially damage the fused silica optics and reduce overall interferometer sensitivity. These risks are mitigated from a combination of the following approaches: quantifying the extent of the contamination, identifying its sources, improving practices to reduce the generation of particulates, introducing a non-contact in-situ cleaning technique for suspended optics in air, qualifying cleanliness levels against induced damage, and developing methods for remotely measuring and cleaning suspended optics under vacuum. While significant progress has been made in understanding and mitigating contamination, and thus, protecting the optics from losses and damage, there is still more work to be done to reach ultimate performance requirements.
机译:随着高级激光干涉仪引力波天文台(LIGO)项目从安装过渡到全功率运行,光学表面的清洁度受到了极大关注。由于组装和安装工作,在核心光学器件上及其附近观察到的微粒数量超过了预期,促使人们重新评估了长期存在的污染控制措施。甚至低的微粒含量也可能损坏熔融石英光学器件并降低整体干涉仪的灵敏度。通过以下方法的组合,可以减轻这些风险:量化污染程度,确定污染源,改进措施以减少微粒的产生,引入非接触式原位清洁技术以悬挂空气中的光学元件,达到清洁要求级别以防止引起的损坏,以及开发用于在真空下远程测量和清洁悬挂式光学器件的方法。尽管在了解和减轻污染,从而保护光学器件免受损失和损坏方面已经取得了重大进展,但要达到最终的性能要求,还有许多工作要做。

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