Laser Interferometers as Dark Matter Detectors
arXiv:1605.01103 · doi:10.1103/PhysRevD.98.083019
Abstract
While global cosmological and local galactic abundance of dark matter is well established, its identity, physical size and composition remain a mystery. In this paper, we analyze an important question of dark matter detectability through its gravitational interaction, using current and next generation gravitational-wave observatories to look for macroscopic (kilogram-scale or larger) objects. Keeping the size of the dark matter objects to be smaller than the physical dimensions of the detectors, and keeping their mass as free parameters, we derive the expected event rates. For favorable choice of mass, we find that dark matter interactions could be detected in space-based detectors such as LISA at a rate of one per ten years. We then assume the existence of an additional Yukawa force between dark matter and regular matter. By choosing the range of the force to be comparable to the size of the detectors, we derive the levels of sensitivity to such a new force, which exceeds the sensitivity of other probes in a wide range of parameters. For sufficiently large Yukawa coupling strength, the rate of dark matter events can then exceed 10 per year for both ground- and space-based detectors. Thus, gravitational-wave observatories can make an important contribution to a global effort of searching for non-gravitational interactions of dark matter.
References in corpus (11)
- Big-Bang Nucleosynthesis
- Advanced LIGO
- Too big to fail? The puzzling darkness of massive Milky Way subhaloes
- Test of the Equivalence Principle Using a Rotating Torsion Balance
- GW150914: The Advanced LIGO Detectors in the Era of First Discoveries
- The non-gravitational interactions of dark matter in colliding galaxy clusters
- Dark Matter Direct Detection with Accelerometers
- Searching for dark matter and variation of fundamental constants with laser and maser interferometry
- A Gravitational Wave Detector with Cosmological Reach
- Hearing the signals of dark sectors with gravitational wave detectors
- Search for Small-Mass Black Hole Dark Matter with Space-Based Gravitational Wave Detectors
Cited by in corpus (35)
- Searching for new physics using optically levitated sensors
- Mechanical Quantum Sensing in the Search for Dark Matter
- Novel signatures of dark matter in laser-interferometric gravitational-wave detectors
- Search for composite dark matter with optically levitated sensors
- Direct limits for scalar field dark matter from a gravitational-wave detector
- Primordial Extremal Black Holes as Dark Matter
- Detecting Dark Blobs
- Proposal for gravitational direct detection of dark matter
- Snowmass2021 Cosmic Frontier White Paper: Ultraheavy particle dark matter
- An Experiment for Observing Quantum Gravity Phenomena using Twin Table-Top 3D Interferometers
- Search for Kilogram-scale Dark Matter with Precision Displacement Sensors
- Probing new light gauge bosons with gravitational-wave interferometers using an adapted semi-coherent method
- Quantum Gravitational Sensor for Space Debris
- Searching for scalar field dark matter with LIGO
- Gravitational wave probes of particle dark matter: a review
- Back-action evading impulse measurement with mechanical quantum sensors
- Intensity interferometry for ultralight bosonic dark matter detection
- Searching for Dark Clumps with Gravitational-Wave Detectors
- Macroscopic Dark Matter Detection with Gravitational Wave Experiments
- Asteroids for ultralight dark-photon dark-matter detection
- Light Dark Matter Scattering in Gravitational Wave Detectors
- Detection Prospects of Dark Matter in Einstein Telescope
- Discovery prospects for heavy dark matter in KAGRA
- Proper Time Observables of General Gravitational Perturbations in Laser Interferometry-based Gravitational Wave Detectors
- Exploring dark photons via a subfrequency laser searchin gravitational wave detectors
- Picolensing as a Probe of Primordial Black Hole Dark Matter
- Millicharge Dark Matter Detection with Mach-Zehnder Interferometer
- Interaction of cosmological domain walls with large classical objects, like planets and satellites, and the flyby anomaly
- Detecting gravitational signatures of dark matter with atom gradiometers
- Probing Spin-2 Ultralight Dark Matter with Space-based Gravitational Wave Detectors in the mHz Regime
- Radial kinks in the boson stars
- Models of ultra-heavy dark matter visible to macroscopic mechanical sensing arrays
- Probing Dark Matter Clumps, Strings and Domain Walls with Gravitational Wave Detectors
- Dark Matter Clumps as Sources of Gravitational-Wave Glitches in LIGO/Virgo/KAGRA data
- The Discovery Potential of Space-Based Gravitational Wave Astronomy