Vahlbruch Henning, Chelkowski Simon, Hage Boris, Franzen Alexander, Danzmann Karsten, Schnabel Roman
Institut für Atom- und Molekülphysik, Universität Hannover and Max-Planck-Institut für Gravitationsphysik (Albert-Einstein-Institut), Callinstrasse 38, 30167 Hannover, Germany.
Phys Rev Lett. 2005 Nov 18;95(21):211102. doi: 10.1103/PhysRevLett.95.211102. Epub 2005 Nov 16.
We report on the experimental combination of three advanced interferometer techniques for gravitational wave detection, namely, power recycling, detuned signal recycling, and squeezed field injection. For the first time, we experimentally prove the compatibility of especially the latter two. To achieve a broadband nonclassical sensitivity improvement, we applied a filter cavity for compensation of quadrature rotation. The signal-to-noise ratio was improved by up to 2.8 dB beyond the coherent state's shot noise. The complete setup was stably locked for arbitrary times and characterized by injected single-sideband modulation fields.
我们报告了用于引力波探测的三种先进干涉仪技术的实验组合,即功率回收、失谐信号回收和压缩场注入。我们首次通过实验证明了后两种技术的兼容性。为了实现宽带非经典灵敏度的提高,我们应用了一个滤波腔来补偿正交旋转。信噪比在相干态散粒噪声基础上提高了高达2.8 dB。整个装置在任意时间段内都能稳定锁定,并通过注入单边带调制场进行了表征。