Detection Prospects of Dark Matter in Einstein Telescope
arXiv:2111.11014 · doi:10.1103/PhysRevD.105.083001
Abstract
We improve the calculations of the elastic motion induced by the dark matter hits on the surface of the mirror equipped with the interferometer for gravitational waves detection. We focus on the discovery potential of such a dark matter signal on the third-generation European gravitational waves detector, the Einstein Telescope. By taking the thickness of mirror into account, more than one resonances are predicted in the sensitive regime of high frequency interferometer. When mass of dark matter is heavier than a few PeV or is highly boosted, the signal-to-noise ratio could exceed one, and Einstein Telescope should be about to detect this dark matter signal.
14 pages, 2 figures, 3 tables
References in corpus (16)
- Observation of an anomalous positron abundance in the cosmic radiation
- Gravitational-wave sensitivity curves
- A New Method for Gravitational Wave Detection with Atomic Sensors
- An Atomic Gravitational Wave Interferometric Sensor (AGIS)
- Searching for dark matter and variation of fundamental constants with laser and maser interferometry
- General Relativistic Effects in Atom Interferometry
- Observation of Parametric Instability in Advanced LIGO
- Search for composite dark matter with optically levitated sensors
- Mid-band gravitational wave detection with precision atomic sensors
- Search for light scalar Dark Matter candidate with AURIGA detector
- Production and attenuation of cosmic-ray boosted dark matter
- Elastic and Inelastic Scattering of Cosmic-Rays on Sub-GeV Dark Matter
- Search for Small-Mass Black Hole Dark Matter with Space-Based Gravitational Wave Detectors
- Filtered asymmetric dark matter during the Peccei-Quinn phase transition
- Light Dark Matter Scattering in Gravitational Wave Detectors
- Direct Detection of Dark Matter with Space-based Laser Interferometers
Cited by in corpus (6)
- Neutron Stars with Baryon Number Violation, Probing Dark Sectors
- The impact of dark matter on tidal signatures in neutron star mergers with Einstein Telescope
- Discovery prospects for heavy dark matter in KAGRA
- Exploring dark photons via a subfrequency laser searchin gravitational wave detectors
- Probing Spin-2 Ultralight Dark Matter with Space-based Gravitational Wave Detectors in the mHz Regime
- Millicharge Dark Matter Detection with Mach-Zehnder Interferometer