Relativistic and nonrelativistic annihilation of dark matter: a sanity check using an effective field theory approach
arXiv:1506.07475 · doi:10.1140/epjc/s10052-016-3991-2
Abstract
We find an exact formula for the thermally averaged cross section times the relative velocity with relativistic Maxwell-Boltzmann statistics. The formula is valid in the effective field theory approach when the masses of the annihilation products can be neglected compared with the dark matter mass and cut-off scale. The expansion at directly gives the nonrelativistic limit of which is usually used to compute the relic abundance for heavy particles that decouple when they are nonrelativistic. We compare this expansion with the one obtained by expanding the total cross section in powers of the nonrelativistic relative velocity . We show the correct invariant procedure that gives the nonrelativistic average coinciding with the large expansion of in the comoving frame. We explicitly formulate flux, cross section, thermal average, collision integral of the Boltzmann equation in an invariant way using the true relativistic relative , showing the uselessness of the Møller velocity and further elucidating the conceptual and numerical inconsistencies related with its use.
10 pages, two columns, 3 figures. v3: published version
References in corpus (17)
- Precise Relic WIMP Abundance and its Impact on Searches for Dark Matter Annihilation
- Constraints on Dark Matter from Colliders
- Non-relativistic effective theory of dark matter direct detection
- Simplified Dark Matter Models for the Galactic Center Gamma-Ray Excess
- On the Validity of the Effective Field Theory for Dark Matter Searches at the LHC, Part II: Complete Analysis for the s-channel
- Deducing the nature of dark matter from direct and indirect detection experiments in the absence of collider signatures of new physics
- On the Validity of the Effective Field Theory for Dark Matter Searches at the LHC Part III: Analysis for the -channel
- The Effects of QCD Equation of State on the Relic Density of WIMP Dark Matter
- Illuminating Dark Matter at the ILC
- The Fermionic Dark Matter Higgs Portal: an effective field theory approach
- Singlet Majorana fermion dark matter: a comprehensive analysis in effective field theory
- Probability distribution for the relative velocity of colliding particles in a relativistic classical gas
- Relativistic in the calculation of relics abundances: a closer look
- Effective field theory interpretation of searches for dark matter annihilation in the Sun with the IceCube Neutrino Observatory
- The Thermal Abundance of Semi-Relativistic Relics
- Thermal dark matter implies new physics not far above the weak scale
- Exact theory of freeze out
Cited by in corpus (6)
- Matter Power Spectrum in Hidden Neutrino Interacting Dark Matter Models: A Closer Look at the Collision Term
- Implications of Feebly Interacting Dark Sector on Neutron Star Properties and Constraints from GW170817
- Lorentz invariant relative velocity and relativistic binary collisions
- Some Remarks on dual helicity flag-dipole spinors
- Dark matter mass from relic abundance, an extra gauge boson, and active-sterile neutrino mixing
- Search for Ultra-High Energy WIMPs by detecting neutrino signatures from the earth core