Quantum Interferometer Combining Squeezing and Parametric Amplification

Xiaojie Zuo, Zhihui Yan, Yanni Feng, Jingxu Ma, Xiaojun Jia, Changde Xie, Kunchi Peng · Physical Review Letters · 2020

High precision interferometers are the building blocks of precision metrology and the ultimate interferometric sensitivity is limited by the quantum noise. Here, we propose and experimentally demonstrate a compact quantum interferometer involving two optical parametric amplifiers and the squeezed states generated within the interferometer are directly used for the phase-sensing quantum state. By both squeezing shot noise and amplifying phase-sensing intensity the sensitivity improvement of 4.86±0.24 dB beyond the standard quantum limit is deterministically realized and a minimum detectable phase smaller than that of all present interferometers under the same phase-sensing intensity is achieved. This interferometric system has significantly potential applications in a variety of measurements for tiny variances of physical quantities.

Read the paper · More papers on PaperTik