Halo-independent bounds on the non-relativistic effective theory of WIMP-nucleon scattering from direct detection and neutrino observations
arXiv:2212.05774 · doi:10.1088/1475-7516/2023/03/011
Abstract
We combine experimental constraints from direct detection searches and from neutrino telescopes looking for WIMP annihilations in the Sun to derive halo-independent bounds on each of the 28 WIMP-proton and WIMP-neutron couplings of the effective non-relativistic Hamiltonian that drives the scattering process off nuclei of a WIMP of spin 1/2. The method assumes that the velocity distribution is normalized to one and homogeneous at the the solar system scale, as well as equilibrium between WIMP capture and annihilation in the Sun, and requires to fix the WIMP annihilation channels (we assume ). We consider a single non-vanishing coupling at a time, and find that for most of the couplings the degree of relaxation of the halo-independent bounds compared to those obtained by assuming the Standard Halo Model is with few exceptions relatively moderate in the low and high WIMP mass regimes, where it can be as small as a factor of , while in the intermediate mass range between 10 GeV and 200 GeV it can be as large as . An exception to this general pattern, with more moderate values of the bound relaxation, is observed in the case of spin-dependent WIMP-proton couplings with no or a comparatively small momentum suppression, for which WIMP capture is strongly enhanced because it is driven by scattering events off , which is the most abundant target in the Sun. Within this class of operators the relaxation is particularly small for interactions that are driven by only the velocity-dependent term, for which the solar capture signal is enhanced compared to the direct detection one, thanks to the highest speed of scattering WIMPs within the Sun due to the larger gravitational acceleration.
26 pages, 7 figures, 2 tables. Discussion on equilibrium between capture and annihilation extended. Updated to published version
References in corpus (16)
- The RAVE Survey: Constraining the Local Galactic Escape Speed
- Dark Matter Search Results from the Complete Exposure of the PICO-60 CF Bubble Chamber
- Neutrinos from WIMP Annihilations Obtained Using a Full Three-Flavor Monte Carlo Approach
- Interpreting Dark Matter Direct Detection Independently of the Local Velocity and Density Distribution
- Taking Halo-Independent Dark Matter Methods Out of the Bin
- Search for GeV-scale Dark Matter Annihilation in the Sun with IceCube DeepCore
- Quantifying (dis)agreement between direct detection experiments in a halo-independent way
- Constraints on dark matter-nucleon effective couplings in the presence of kinematically distinct halo substructures using the DEAP-3600 detector
- A systematic halo-independent analysis of direct detection data within the framework of Inelastic Dark Matter
- Studying generalised dark matter interactions with extended halo-independent methods
- What is the probability that direct detection experiments have observed Dark Matter?
- Direct detection of non-galactic light dark matter
- Probing WIMP particle physics and astrophysics with direct detection and neutrino telescope data
- Predicting the dark matter velocity distribution in galactic structures: tests against hydrodynamic cosmological simulations
- Towards a more rigorous treatment of uncertainties on the velocity distribution of dark matter particles for capture in stars
- A halo-independent lower bound on the dark matter capture rate in the Sun from a direct detection signal
Cited by in corpus (7)
- Jet substructure probe to unfold singlet-doublet dark matter in the presence of non-standard cosmology
- Halo-independent bounds on Inelastic Dark Matter
- Isospin-violating dark matter at liquid noble detectors: new constraints, future projections, and an exploration of target complementarity
- Collider fingerprints of freeze-in dark matter produced during the fast expansion phase of Universe
- Sensitivity of WIMP bounds on the velocity distribution in the limit of a massless mediator
- Information divergences to parametrize astrophysical uncertainties in dark matter direct detection
- Information-theoretic astrophysical uncertainties in the effective theory of dark matter direct detection