Back to Search Start Over

Quantum precision limits of displacement noise free interferometers

Authors :
Gefen, Tuvia
Tarafder, Rajashik
Adhikari, Rana X.
Chen, Yanbei
Publication Year :
2022
Publisher :
arXiv, 2022.

Abstract

Current laser-interferometric gravitational wave detectors suffer from a fundamental limit to their precision due to the displacement noise of optical elements contributed by various sources. Several schemes for Displacement-Noise Free Interferometers (DFI) have been proposed to mitigate their effects. The idea behind these schemes is similar to decoherence-free subspaces in quantum sensing i.e. certain modes contain information about the gravitational waves but are insensitive to the displacement noise. In this paper we derive quantum precision limits for general DFI schemes, including optimal measurement basis and optimal squeezing schemes. We introduce a triangular cavity DFI scheme and apply our general bounds to it. Precision analysis of this scheme with different noise models shows that the DFI property leads to interesting sensitivity profiles and improved precision due to noise mitigation and larger gain from squeezing. Further extensions of this scheme are presented.

Details

Database :
OpenAIRE
Accession number :
edsair.doi.dedup.....3ae99a17d8a46cd6d520d529ae15ff0e
Full Text :
https://doi.org/10.48550/arxiv.2209.02998