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Experimental demonstration of a squeezing-enhanced power-recycled Michelson interferometer for gravitational wave detection

机译:用于引力波检测的挤压增强功率再生迈克尔逊干涉仪的实验演示

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摘要

Interferometric gravitational wave detectors are expected to be limited by shot noise at some frequencies. We experimentally demonstrate that a power recycled Michelson with squeezed light injected into the dark port can overcome this limit. An improvement in the signal-to-noise ratio of 2.3 dB is measured and locked stably for long periods of time. The configuration, control, and signal readout of our experiment are compatible with current gravitational wave detector designs. We consider the application of our system to long baseline interferometer designs such as LIGO.
机译:干涉式重力波探测器有望在某些频率下受到散粒噪声的限制。我们通过实验证明,将压缩光注入暗端口的电源循环迈克尔逊可以克服此限制。可以测量到2.3 dB的信噪比改善,并且可以长时间稳定地锁定。我们实验的配置,控制和信号读取与当前重力波检测器设计兼容。我们考虑将我们的系统应用于长基线干涉仪设计,例如LIGO。

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