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A gravitational wave detector operating beyond the quantum shot-noise limit: Squeezed light in application

机译:引力波探测器的工作超出了量子散粒噪声的限制:应用中压缩了光

摘要

This contribution reviews our recent progress on the generation of squeezed light [1], and also the recent squeezed-light enhancement of the gravitational wave detector GEO 600 [2]. GEO 600 is currently the only GW observatory operated by the LIGO Scientific Collaboration in its search for gravitational waves. With the help of squeezed states of light it now operates with its best ever sensitivity, which not only proves the qualification of squeezed light as a key technology for future gravitational wave astronomy but also the usefulness of quantum entanglement.
机译:这一贡献回顾了我们在产生压缩光方面的最新进展[1],以及最近在重力波检测器GEO 600 [2]中获得的压缩光的增强。目前,GEO 600是LIGO科学合作社在寻找引力波时唯一的GW天文台。借助于压缩光的状态,它现在以前所未有的最佳灵敏度运行,这不仅证明了压缩光作为未来引力波天文学的关键技术的资格,而且证明了量子纠缠的有用性。

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