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Impact of correlated magnetic noise on the detection of stochastic gravitational waves: Estimation based on a simple analytical model

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arxiv 1704.07084 v2 pith:QN25SYSJ submitted 2017-04-24 astro-ph.IM astro-ph.COgr-qc

classification astro-ph.IMastro-ph.COgr-qc
keywords detectiondetectorsmodelnoisestochasticcorrelatedimpactmagnetic
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After the first direct detection of gravitational waves (GW), detection of stochastic background of GWs is an important next step, and the first GW event suggests that it is within the reach of the second-generation ground-based GW detectors. Such a GW signal is typically tiny, and can be detected by cross-correlating the data from two spatially separated detectors if the detector noise is uncorrelated. It has been advocated, however, that the global magnetic fields in the Earth-ionosphere cavity produce the environmental disturbances at low-frequency bands, known as Schumann resonances, which potentially couple with GW detectors. In this paper, we present a simple analytical model to estimate its impact on the detection of stochastic GWs. The model crucially depends on the geometry of the detector pair through the directional coupling, and we investigate the basic properties of the correlated magnetic noise based on the analytic expressions. The model reproduces the major trend of the recently measured global correlation between the GW detectors via magnetometer. The estimated values of the impact of correlated noise also match those obtained from the measurement. Finally, we give an implication to the detection of stochastic GWs including upcoming detectors, KAGRA and LIGO India. The model suggests that LIGO Hanford-Virgo and Virgo-KAGRA pairs are possibly less sensitive to the correlated noise, and can achieve a better sensitivity to the stochastic GW signal in the most pessimistic case.

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Cited by 2 Pith papers

Reviewed papers in the Pith corpus that reference this work. Sorted by Pith novelty score. Full citation record

  1. New Sensitivity Curves for Gravitational-Wave Signals from Cosmological Phase Transitions

    hep-ph 2020-02 unverdicted novelty 7.0 of 10

    Defines peak-integrated sensitivity curves (PISCs) that fold in the expected spectral shape of gravitational waves from cosmological phase transitions and supplies semianalytical fits plus public data for major detectors.

  2. Correlated magnetic noise from anisotropic lightning sources and the detection of stochastic gravitational waves

    astro-ph.IM 2019-08 conditional novelty 5.0 of 10

    Anisotropic lightning sources do not always worsen Schumann-resonance correlated magnetic noise for stochastic gravitational wave searches, and the Virgo-KAGRA pair is least affected.

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