Optimizing the phase sensitivity of Michelson interferometer with two-mode squeezed coherent input in the presence of loss and noise

IF 4.2 Q2 QUANTUM SCIENCE & TECHNOLOGY AVS quantum science Pub Date : 2023-07-05 DOI:10.1116/5.0148632
Stav Haldar, Pratik J. Barge, Xiaoqi Xiao, Hwangsuk Lee
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Abstract

A Michelson-type interferometer with two-mode squeezed coherent state input is considered. Such an interferometer has a better phase sensitivity over the shot-noise limit by a factor of e2r, where r is the squeezing parameter [Phys. Rev. A 102, 022614 (2020)]. We show that when photon loss and noise in the two arms are asymmetric, an optimal choice of the squeezing angle can allow improvement in phase sensitivity without any increase in input or pump power. In particular, when loss occurs only in one arm of the interferometer, we can have improvement in phase sensitivity for photon loss up to 80%. Hence, a significant improvement can be made in several applications such as LiDAR, gyroscopes, and measuring refractive indices of highly absorptive/reflective materials.
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有损耗和噪声时双模压缩相干输入迈克尔逊干涉仪相位灵敏度的优化
考虑了一种具有双模压缩相干态输入的迈克尔逊干涉仪。这种干涉仪具有比散粒噪声极限高出e2r因子的更好的相位灵敏度,其中r是压缩参数[Phys.Rev.A10022614(2020)]。我们表明,当两臂中的光子损耗和噪声不对称时,压缩角的最佳选择可以在不增加输入或泵浦功率的情况下提高相位灵敏度。特别是,当损耗仅发生在干涉仪的一个臂中时,我们可以将光子损耗的相位灵敏度提高到80%。因此,可以在诸如激光雷达、陀螺仪和测量高吸收/反射材料的折射率的几个应用中进行显著改进。
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