Improved Treatment of Bosonic Dark Matter Dynamics in Neutron Stars: Consequences and Constraints
arXiv:2408.16091 · doi:10.1088/1475-7516/2024/12/053
Abstract
It is conceivable that a bosonic dark matter (DM) with non-gravitational interactions with SM particles will be accumulated at the center of a neutron star (NS) and can lead to black hole formation. In contrast to previous works with a fixed NS temperature, we dynamically determine the formation of Bose-Einstein condensate (BEC) for a given set of DM parameters, namely the DM-neutron scattering cross-section (), the thermal average of DM annihilation cross-section () and the DM mass (). For both non-annihilating and annihilating DM with , the BEC forms for TeV. In case of non-annihilating DM, observations of old NS allows for (with BEC) and for (without BEC). This analysis shows that the electroweak mass window, is essentially unconstrained by NS observations and therefore is subject only to direct detection experiments. In the annihilating DM scenario, the exclusion limits on DM parameters become weaker and even vanish for typical WIMP annihilation cross-section. However, the late-time heating of the NS enables us to probe the region with , using the James Webb Space Telescope in the foreseeable future. When our results are viewed in the context of indirect searches of DM, it provides a lower limit on the , which is sensitive to the DM thermal state.
24 pages, 7 figures, several comments added, version matches with version published in JCAP
References in corpus (26)
- GW170817: Observation of Gravitational Waves from a Binary Neutron Star Inspiral
- The James Webb Space Telescope
- WIMP Annihilation and Cooling of Neutron Stars
- Compact Stars as Dark Matter Probes
- Constraining Asymmetric Dark Matter through observations of compact stars
- Bosonic Dark Matter in Neutron Stars and its Effect on Gravitational Wave Signal
- Constraints on Bosonic Dark Matter From Observations of Old Neutron Stars
- Detecting Dark Matter with Imploding Pulsars in the Galactic Center
- New Analysis of Neutron Star Constraints on Asymmetric Dark Matter
- Bosonic Dark Matter in Light of the NICER Precise Mass-Radius Measurements
- Neutron star cooling: Theoretical aspects and observational constraints
- Can LIGO Detect Non-Annihilating Dark Matter?
- Bounds on Long-lived Dark Matter Mediators from Neutron Stars
- Observational Inference on the Delay Time Distribution of Short Gamma-ray Bursts
- Neutrinos from captured dark matter annihilation in a galactic population of neutron stars
- Discovery and timing of ten new millisecond pulsars in the globular cluster Terzan 5
- Celestial Objects as Strongly-Interacting Non-Annihilating Dark Matter Detectors
- Constraining properties of asymmetric dark matter candidates from gravitational-wave observations
- Thermalization and Annihilation of Dark Matter in Neutron Stars
- Pulsars in Globular Clusters
- Faint light of old neutron stars and detectability at the James Webb Space Telescope
- Bosonic dark matter dynamics in hybrid neutron stars
- MeV to multi-TeV thermal WIMPs: most conservative limits
- Overview of the European Extremely Large Telescope and its instrument suite
- Indirect Searches for Dark Photon-Photon Tridents in Celestial Objects
- Upper limits on the dark matter content in globular clusters