Gravitational Focusing of Wave Dark Matter
arXiv:2112.05718 · doi:10.1103/PhysRevD.105.063032
Abstract
A massive astrophysical object deforms a local distribution of dark matter, resulting in a local overdensity of dark matter. This phenomenon is often referred to as gravitational focusing. In the solar system, the gravitational focusing due to the Sun induces modulations of dark matter signals on terrestrial experiments. We consider the gravitational focusing of a light bosonic dark matter with a mass of less than about 10 eV. The wave nature of such dark matter candidates leads to unique signatures both in the local overdensity and in the spectrum, both of which can be experimentally relevant. We provide a formalism that captures both the gravitational focusing and the stochasticity of wave dark matter, paying particular attention to the similarity and difference to particle dark matter. Distinctive patterns in the density contrast and spectrum are observed when the de Broglie wavelength of dark matter becomes comparable or less than the size of the system and/or when the velocity dispersion of dark matter is sufficiently small. While gravitational focusing effects generally remain at a few percent level for a relaxed halo dark matter component, they could be much larger for dark matter substructures. With a few well-motivated dark matter substructures, we investigate how each substructure responds to the gravitational potential of the Sun. The limit at which wave dark matter behaves similar to particle dark matter is also discussed.
17 pages, 13 figures, version published in PRD
References in corpus (25)
- Ultralight scalars as cosmological dark matter
- A Theory of Dark Matter
- Dielectric Haloscopes: A New Way to Detect Axion Dark Matter
- Searching for dilaton dark matter with atomic clocks
- Streams, substructures and the early history of the Milky Way
- Wave Dark Matter
- First results from a microwave cavity axion search at 24 micro-eV
- Thin, thick and dark discs in LCDM
- Search for ultralight scalar dark matter with atomic spectroscopy
- Search for "Invisible" Axion Dark Matter in the eV Mass Range
- Phase-space structure in the local dark matter distribution and its signature in direct detection experiments
- Precision Metrology Meets Cosmology: Improved Constraints on Ultralight Dark Matter from Atom-Cavity Frequency Comparisons
- First Results from Axion Haloscope at CAPP around 10.7 eV
- Search for axion-like dark matter through nuclear spin precession in electric and magnetic fields
- Direct limits for scalar field dark matter from a gravitational-wave detector
- NASDUCK: New Constraints on Axion-like Dark Matter from Floquet Quantum Detector
- Searching for dark matter with an unequal delay interferometer
- Searching for Scalar Dark Matter via Coupling to Fundamental Constants with Photonic, Atomic and Mechanical Oscillators
- Phase-space distribution of unbound dark matter near the Sun
- Dark Matter Interferometry
- Constraints on scalar field dark matter from co-located Michelson interferometers
- Sliding Naturalness
- Refined ultralight scalar dark matter searches with compact atom gradiometers
- Sliding Naturalness: Cosmological Selection of the Weak Scale
- Dissecting axion and dark photon with a network of vector sensors
Cited by in corpus (19)
- Dark Photon Stars: Formation and Role as Dark Matter Substructure
- The Phenomenology of Quadratically Coupled Ultra Light Dark Matter
- First results from BRASS-p broadband searches for hidden photon dark matter
- What can a GNOME do? Search targets for the Global Network of Optical Magnetometers for Exotic physics searches
- Adiabatically compressed wave dark matter halo and intermediate-mass ratio inspirals
- Probing an ultralight QCD axion with electromagnetic quadratic interaction
- A Quantum Description of Wave Dark Matter
- Towards Resolving the Gallium Anomaly
- Relaxion Dark Matter from Stochastic Misalignment
- Super-Nyquist ultralight dark matter searches with broadband atom gradiometers
- Gravitational focusing effects on streaming dark matter as a new detection concept
- Searching for dark matter with the Th-229 nuclear lineshape from laser spectroscopy
- Searches for exotic spin-dependent interactions with spin sensors
- Exploring millicharged dark matter components from the shadows
- Detecting gravitational signatures of dark matter with atom gradiometers
- Probing Superheavy Dark Matter with Exoplanets
- On Pulsar Timing Detection of Ultralight Vector Dark Matter
- Search for a solar-bound axion halo using the Global Network of Optical Magnetometers for Exotic physics searches
- Probing Quadratically Coupled Ultralight Dark Matter with Pulsar Timing Arrays