Vahlbruch Henning, Mehmet Moritz, Danzmann Karsten, Schnabel Roman
Institut für Gravitationsphysik, Leibniz Universität Hannover and Max-Planck-Institut für Gravitationsphysik (Albert-Einstein-Institut), Callinstraße 38, 30167 Hannover, Germany.
Institut für Laserphysik and Zentrum für Optische Quantentechnologien, Universität Hamburg, Luruper Chaussee 149, 22761 Hamburg, Germany.
Phys Rev Lett. 2016 Sep 9;117(11):110801. doi: 10.1103/PhysRevLett.117.110801. Epub 2016 Sep 6.
Squeezed states of light belong to the most prominent nonclassical resources. They have compelling applications in metrology, which has been demonstrated by their routine exploitation for improving the sensitivity of a gravitational-wave detector since 2010. Here, we report on the direct measurement of 15 dB squeezed vacuum states of light and their application to calibrate the quantum efficiency of photoelectric detection. The object of calibration is a customized InGaAs positive intrinsic negative (p-i-n) photodiode optimized for high external quantum efficiency. The calibration yields a value of 99.5% with a 0.5% (k=2) uncertainty for a photon flux of the order 10^{17} s^{-1} at a wavelength of 1064 nm. The calibration neither requires any standard nor knowledge of the incident light power and thus represents a valuable application of squeezed states of light in quantum metrology.
压缩光态属于最突出的非经典资源。它们在计量学中有着引人注目的应用,自2010年以来,通过常规利用它们来提高引力波探测器的灵敏度就已经证明了这一点。在此,我们报告了对15分贝压缩真空光态的直接测量及其在校准光电探测量子效率方面的应用。校准对象是一个为高外部量子效率而优化的定制铟镓砷正本征负型(p-i-n)光电二极管。对于波长为1064纳米、光子通量约为10^{17} s^{-1} 的情况,校准得到的值为99.5%,不确定度为0.5%(k = 2)。这种校准既不需要任何标准,也不需要知道入射光功率,因此代表了压缩光态在量子计量学中的一个有价值的应用。