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Measurement-dependent erasure of distinguishability for the observation of interference in an unbalanced SU(1,1) interferometer

Authors :
Huo, Nan
Cui, Liang
Zhang, Yunxiao
Zhao, Wen
Guo, Xueshi
Ou, Z. Y.
Li, Xiaoying
Publication Year :
2021

Abstract

It is known that quantum interference can disappear with the mere possibility of distinguishability without actually performing the act. We create such distinguishability in an unbalanced SU(1,1) interferometer and indeed observe no interference in the direct photodetection of the outputs. On the other hand, such distinguishability can be erased with a projective measurement. Here, we report a method of homodyne detection that can also recover interference effect. We find that it is the indistinguishability in amplitude measurement that leads to the recovery of interference, and the quantum nature of homodyne detection and the detector's slow response time both play an essential role. This is different from the quantum eraser schemes mentioned above. It demonstrates that quantum interference occurs in the measurement processes. With no need for path compensation, the unbalanced interferometers studied here should have practical applications in quantum metrology and sensing.<br />Comment: 9 pages, 6 figures

Subjects

Subjects :
Quantum Physics

Details

Database :
arXiv
Publication Type :
Report
Accession number :
edsarx.2109.10592
Document Type :
Working Paper