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arXiv:0805.2387·v3·General Relativity and Quantum Cosmology

Effect of energy deposited by cosmic-ray particles on interferometric gravitational wave detectors

Kazuhiro Yamamoto🇯🇵 · Hideaki Hayakawa🇯🇵 · Atsushi Okada🇯🇵 · Takashi Uchiyama🇯🇵 · Shinji Miyoki🇯🇵 · Masatake Ohashi🇯🇵 · Kazuaki Kuroda🇯🇵 · Nobuyuki Kanda🇯🇵 · Daisuke Tatsumi🇯🇵 · Yoshiki Tsunesada🇯🇵

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Abstract

We investigated the noise of interferometric gravitational wave detectors due to heat energy deposited by cosmic-ray particles. We derived a general formula that describes the response of a mirror against a cosmic-ray passage. We found that there are differences in the comic-ray responses (the dependence of temperature and cosmic-ray track position) in cases of interferometric and resonant gravitational wave detectors. The power spectral density of vibrations caused by low-energy secondary muons is 100-times smaller than the goal sensitivity of future second-generation interferometer projects, such as LCGT and Advanced LIGO. The arrival frequency of high-energy cosmic-ray muons that generate enough large showers inside mirrors of LCGT and Advanced LIGO is one per a millennium. We also discuss the probability of exotic-particle detection with interferometers.

Comments: 4 figures

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