Effects of mirror birefringence and its fluctuations to laser interferometric gravitational wave detectors

Fuente: arXiv
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Autori principali: Michimura, Yuta, Wang, Haoyu, Salces-Carcoba, Francisco, Wipf, Christopher, Brooks, Aidan, Arai, Koji, Adhikari, Rana X
Natura: Preprint
Pubblicazione: 2023
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author Michimura, Yuta
Wang, Haoyu
Salces-Carcoba, Francisco
Wipf, Christopher
Brooks, Aidan
Arai, Koji
Adhikari, Rana X
author_facet Michimura, Yuta
Wang, Haoyu
Salces-Carcoba, Francisco
Wipf, Christopher
Brooks, Aidan
Arai, Koji
Adhikari, Rana X
contents Crystalline materials are promising candidates as substrates or high-reflective coatings of mirrors to reduce thermal noises in future laser interferometric gravitational wave detectors. However, birefringence of such materials could degrade the sensitivity of gravitational wave detectors, not only because it can introduce optical losses, but also because its fluctuations create extra phase noise in the arm cavity reflected beam. In this paper, we analytically estimate the effects of birefringence and its fluctuations in the mirror substrate and coating for gravitational wave detectors. Our calculations show that the requirements for the birefringence fluctuations in silicon substrate and AlGaAs coating will be on the order of $10^{-8}$ and $10^{-10}$ rad/$\sqrt{\rm Hz}$ at 100~Hz, respectively, for future gravitational wave detectors. We also point out that optical cavity response needs to be carefully taken into account to estimate optical losses from depolarization.
format Preprint
id arxiv_https___arxiv_org_abs_2308_00150
institution arXiv
publishDate 2023
record_format arxiv
spellingShingle Effects of mirror birefringence and its fluctuations to laser interferometric gravitational wave detectors
Michimura, Yuta
Wang, Haoyu
Salces-Carcoba, Francisco
Wipf, Christopher
Brooks, Aidan
Arai, Koji
Adhikari, Rana X
Instrumentation and Methods for Astrophysics
General Relativity and Quantum Cosmology
Optics
Crystalline materials are promising candidates as substrates or high-reflective coatings of mirrors to reduce thermal noises in future laser interferometric gravitational wave detectors. However, birefringence of such materials could degrade the sensitivity of gravitational wave detectors, not only because it can introduce optical losses, but also because its fluctuations create extra phase noise in the arm cavity reflected beam. In this paper, we analytically estimate the effects of birefringence and its fluctuations in the mirror substrate and coating for gravitational wave detectors. Our calculations show that the requirements for the birefringence fluctuations in silicon substrate and AlGaAs coating will be on the order of $10^{-8}$ and $10^{-10}$ rad/$\sqrt{\rm Hz}$ at 100~Hz, respectively, for future gravitational wave detectors. We also point out that optical cavity response needs to be carefully taken into account to estimate optical losses from depolarization.
title Effects of mirror birefringence and its fluctuations to laser interferometric gravitational wave detectors
topic Instrumentation and Methods for Astrophysics
General Relativity and Quantum Cosmology
Optics
url https://arxiv.org/abs/2308.00150