Axion minivoids and implications for direct detection
arXiv:2212.00560 · doi:10.1103/PhysRevD.107.083510
Abstract
In the scenario in which QCD axion dark matter is produced after inflation, the Universe is populated by large inhomogeneities on very small scales. Eventually, these fluctuations will collapse gravitationally to form dense axion miniclusters that trap up to 75% of the dark matter within asteroid-mass clumps. Axion miniclusters are physically tiny however, so haloscope experiments searching for axions directly on Earth are much more likely to be probing ``minivoids'' -- the space in between miniclusters. This scenario seems like it ought to spell doom for haloscopes, but while these minivoids might be underdense, they are not totally devoid of axions. Using Schrödinger-Poisson and N-body simulations to evolve from realistic initial field configurations, we quantify the extent to which the local ambient dark matter density is suppressed in the post-inflationary scenario. We find that a typical experimental measurement will sample an axion density that is only around 10% of the expected galactic dark matter density. Our results also have implications for experimental campaigns lasting longer than a few years, as well as broadband haloscopes that have sensitivity to transient signatures. We show that for a (year)-long integration times, the measured dark matter density should be expected to vary by 20--30%.
11 pages + appendix, 10 figures. Version accepted by PRD
References in corpus (29)
- Cosmic Structure as the Quantum Interference of a Coherent Dark Wave
- Understanding the Core-Halo Relation of Quantum Wave Dark Matter, DM, from 3D Simulations
- The Local Dark Matter Density
- Dielectric Haloscopes: A New Way to Detect Axion Dark Matter
- CMasher: Scientific colormaps for making accessible, informative and 'cmashing' plots
- The dark-matter axion mass
- Galactic axions search with a superconducting resonant cavity
- Piezoelectrically Tuned Multimode Cavity Search for Axion Dark Matter
- Fast Radio Bursts and Axion Miniclusters
- Astrophysical Effects of Scalar Dark Matter Miniclusters
- Direct Search for Dark Matter Axions Excluding ALP Cogenesis in the 63-67 micro-eV Range, with The ORGAN Experiment
- Projected Sensitivity of DMRadio-m: A Search for the QCD Axion Below eV
- Search for Dark Matter Axions with CAST-CAPP
- Searching for Invisible Axion Dark Matter with an 18T Magnet Haloscope
- Axion Dark Matter Search around 4.55 eV with Dine-Fischler-Srednicki-Zhitnitskii Sensitivity
- Cosmological Bound on the QCD Axion Mass, Redux
- Axion minicluster power spectrum and mass function
- Axion astronomy with microwave cavity experiments
- Source mass characterization in the ARIADNE axion experiment
- Introducing DMRadio-GUT, a search for GUT-scale QCD axions
- Miniclusters in the Axiverse
- Imprints of the Early Universe on Axion Dark Matter Substructure
- Simulations of axion-like particles in the post-inflationary scenario
- Structure of Axion Miniclusters
- The Canfranc Axion Detection Experiment (CADEx): Search for axions at 90 GHz with Kinetic Inductance Detectors
- Destruction of axion miniclusters in the Galaxy
- Earth as a transducer for axion dark-matter detection
- Taiwan Axion Search Experiment with Haloscope: CD102 Analysis Details
- Advancing Globular Cluster Constraints on the Axion-Photon Coupling
Cited by in corpus (18)
- Spectrum of global string networks and the axion dark matter mass
- The Interplay between the Dark Matter Axion and Primordial Black Holes
- The future search for low-frequency axions and new physics with the FLASH resonant cavity experiment at Frascati National Laboratories
- Detecting Dark Matter Substructures on Small Scales with Fast Radio Bursts
- Post-inflationary axions: a minimal target for axion haloscopes
- Axion minicluster streams in the solar neighbourhood
- Stimulated decay of collapsing axion stars and fast radio bursts
- Can Planet 9 be an Axion Star?
- Axions in Andromeda: Searching for Minicluster -- Neutron Star Encounters with the Green Bank Telescope
- Novel standard candle: Collapsing axion stars
- WISP Searches on a Fiber Interferometer under a Strong Magnetic Field
- Do neutrinos bend? Consequences of an ultralight gauge field as dark matter
- Post-inflationary structure formation boosted by parametric self-resonance
- The Disruption of Dark Matter Minihalos by Successive Stellar Encounters
- Evidence for axion miniclusters with an increased central density
- Testing the dark origin of neutrino masses with oscillation experiments
- On the Axion Electrodynamics in a two-dimensional slab and the Casimir effect
- Broadband interferometry-based searches for photon-axion conversion in vacuum