Stellar Basins of Gravitationally Bound Particles
arXiv:2006.12431 · doi:10.1103/PhysRevD.104.023019
Abstract
A new physical phenomenon is identified: volumetric stellar emission into gravitationally bound orbits of weakly coupled particles such as axions, moduli, hidden photons, and neutrinos. While only a tiny fraction of the instantaneous luminosity of a star (the vast majority of the emission is into relativistic modes), the continual injection of these particles into a small part of phase space causes them to accumulate over astrophysically long time scales, forming what I call a "stellar basin", in analogy with the geologic kind. The energy density of the Solar basin will surpass that of the relativistic Solar flux at Earth's location after only a million years, for any sufficiently long-lived particle produced through an emission process whose matrix elements are unsuppressed at low momentum. This observation has immediate and striking consequences for direct detection experiments---including new limits on axion parameter space independent of dark matter assumptions---and may also increase the prospects for indirect detection of weakly interacting particles around compact stars.
9 pages, 3 figures
References in corpus (20)
- Excess Electronic Recoil Events in XENON1T
- Rapid Cooling of the Neutron Star in Cassiopeia A Triggered by Neutron Superfluidity in Dense Matter
- Revisiting the bound on axion-photon coupling from Globular Clusters
- Bosonic super-WIMPs as keV-scale dark matter
- Stellar cooling bounds on new light particles: plasma mixing effects
- Axions and the cooling of white dwarf stars
- Revisiting the axion bounds from the Galactic white dwarf luminosity function
- Limits on Axion Couplings from the first 80-day data of PandaX-II Experiment
- XENON1T excess from anomaly-free ALP dark matter and its implications for stellar cooling anomaly
- On the Dynamical Stability of the Solar System
- Axion mass limit from observations of the neutron star in Cassiopeia A
- Axions and the white dwarf luminosity function
- Dark matter in the solar system III: The distribution function of WIMPs at the Earth from gravitational capture
- Axions from cooling compact stars: pair-breaking processes
- Anomaly-free flavor models for Nambu-Goldstone bosons and the 3.5 keV X-ray line signal
- Revisiting longitudinal plasmon-axion conversion in external magnetic fields
- Superfluid phases of triplet pairing and rapid cooling of the neutron star in Cassiopeia A
- Solar neutrino flux at keV energies
- Dark Photons in the Solar Basin
- Search for Bosonic Super-WIMP Interactions with the XENON100 Experiment
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- The Irreducible Axion Background
- Re-examining the Solar Axion Explanation for the XENON1T Excess
- Thermal Squeezeout of Dark Matter
- Strong supernovae bounds on ALPs from quantum loops
- Quantifying uncertainties in the solar axion flux and their impact on determining axion model parameters
- Lepton-flavor violating axions at MEG II
- Axion Couplings in Grand Unified Theories
- New Opportunities for Detecting Axion-Lepton Interactions
- Projected sensitivities of the LUX-ZEPLIN (LZ) experiment to new physics via low-energy electron recoils
- Dark Photons in the Solar Basin
- First indirect detection constraints on axions in the Solar basin
- Detecting Axion Dark Matter with Black Hole Polarimetry
- Constraining axion and compact dark matter with interstellar medium heating
- Warm and Fuzzy Dark Matter: Free Streaming of Wave Dark Matter
- A Helioscope for Gravitationally Bound Millicharged Particles
- New Constraints on Dark Matter and Cosmic Neutrino Profiles through Gravity
- Solar axions in large extra dimensions
- NuSTAR bounds on radiatively decaying particles from M82
- Probing sub-eV Dark Matter decays with PTOLEMY
- Flavor-changing axions and Dirac neutrino masses
- Direct detection signatures of a primordial Solar dark matter halo
- Proposal to use laser-accelerated electrons to probe the axion-electron coupling
- Searching for Axion-Like Particles with X-ray Observations of Alpha Centauri
- Orbital Dynamics of the Solar Basin
- One-loop corrections to ALP couplings
- One-loop corrections to ALP couplings
- Dark matter scattering in astrophysical media: collective effects