Influence of Young’s modulus temperature dependence on parametric instability in Advanced LIGO interferometer

We discuss the influence of Young’s modulus temperature dependence on the number of parametrically unstable modes in a Fabry-Perot cavity of Advanced LIGO interferometer. Some unstable modes may be suppressed by changing the mirror’s temperature due to temperature dependence of Young’s modulus. Vary...

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Main Author: S.E. Strigin
Format: Article
Language:English
Published: Elsevier 2020-12-01
Series:Physics Open
Subjects:
Online Access:http://www.sciencedirect.com/science/article/pii/S2666032620300223
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spelling doaj-8fd7282d6b4b4654b200ba5f3235ab6f2020-12-25T05:12:17ZengElsevierPhysics Open2666-03262020-12-015100035Influence of Young’s modulus temperature dependence on parametric instability in Advanced LIGO interferometerS.E. Strigin0M.V. Lomonosov Moscow State University, Faculty of Physics, Moscow, 119991, RussiaWe discuss the influence of Young’s modulus temperature dependence on the number of parametrically unstable modes in a Fabry-Perot cavity of Advanced LIGO interferometer. Some unstable modes may be suppressed by changing the mirror’s temperature due to temperature dependence of Young’s modulus. Varying the temperature of the mirrors we can change their frequencies of the elastic modes; it, in turn, can change the number of unstable modes, leading to nonlinear effect of parametric oscillatory instability. Preliminary estimations of the optimal values of the temperature variations for some elastic modes are made to reduce the number of unstable modes. The applications of this method in cryogenic detectors like LIGO Voyager or Einstein Telescope are proposed.http://www.sciencedirect.com/science/article/pii/S2666032620300223Parametric instabilityGravitational wave detectors
collection DOAJ
language English
format Article
sources DOAJ
author S.E. Strigin
spellingShingle S.E. Strigin
Influence of Young’s modulus temperature dependence on parametric instability in Advanced LIGO interferometer
Physics Open
Parametric instability
Gravitational wave detectors
author_facet S.E. Strigin
author_sort S.E. Strigin
title Influence of Young’s modulus temperature dependence on parametric instability in Advanced LIGO interferometer
title_short Influence of Young’s modulus temperature dependence on parametric instability in Advanced LIGO interferometer
title_full Influence of Young’s modulus temperature dependence on parametric instability in Advanced LIGO interferometer
title_fullStr Influence of Young’s modulus temperature dependence on parametric instability in Advanced LIGO interferometer
title_full_unstemmed Influence of Young’s modulus temperature dependence on parametric instability in Advanced LIGO interferometer
title_sort influence of young’s modulus temperature dependence on parametric instability in advanced ligo interferometer
publisher Elsevier
series Physics Open
issn 2666-0326
publishDate 2020-12-01
description We discuss the influence of Young’s modulus temperature dependence on the number of parametrically unstable modes in a Fabry-Perot cavity of Advanced LIGO interferometer. Some unstable modes may be suppressed by changing the mirror’s temperature due to temperature dependence of Young’s modulus. Varying the temperature of the mirrors we can change their frequencies of the elastic modes; it, in turn, can change the number of unstable modes, leading to nonlinear effect of parametric oscillatory instability. Preliminary estimations of the optimal values of the temperature variations for some elastic modes are made to reduce the number of unstable modes. The applications of this method in cryogenic detectors like LIGO Voyager or Einstein Telescope are proposed.
topic Parametric instability
Gravitational wave detectors
url http://www.sciencedirect.com/science/article/pii/S2666032620300223
work_keys_str_mv AT sestrigin influenceofyoungsmodulustemperaturedependenceonparametricinstabilityinadvancedligointerferometer
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