Compatibility of a dark matter discovery at XENONnT or LZ with the WIMP thermal production mechanism
Artikel i vetenskaplig tidskrift, 2018

The discovery of dark matter (DM) at XENONnT or LZ would place constraints on DM particle mass and coupling constants. It is interesting to ask when these constraints can be compatible with the DM thermal production mechanism. We address this question within the most general set of renormalizable models that preserve Lorentz and gauge symmetry, and that extend the standard model by one DM candidate of mass m(DM) and one particle of mass M-med mediating DM-quark interactions. Our analysis divides into two parts. First, we postulate that XENONnT/LZ has detected mu(s) similar to O(100) signal events, and use this input to calculate the DM relic density, Omega(Dm)h(2). Then, we identify the regions in the M-med - Omega(Dm)h(2) plane which are compatible with the observed signal and with current CMB data. We find that for most of the models considered here, O(100) signal events at XENONnT/LZ and the DM thermal production are only compatible for resonant DM annihilations, i.e. for M-med similar or equal to 2m(DM). In this case, XENONnT/LZ would be able to simultaneously measure m(DM) and M-med. We also discuss the dependence of our results on m(DM), mu(s) and the DM spin, and provide analytic expressions for annihilation cross sections and mediator decay widths for all models considered in this study.

Författare

Riccardo Catena

Chalmers, Fysik, Subatomär fysik och plasmafysik

Jan Conrad

Stockholms universitet

Martin Krauss

Chalmers, Fysik, Subatomär fysik och plasmafysik

Physical Review D

2470-0010 (ISSN) 2470-0029 (eISSN)

Vol. 97 10 103002

Ämneskategorier

Subatomär fysik

Astronomi, astrofysik och kosmologi

Bioinformatik (beräkningsbiologi)

DOI

10.1103/PhysRevD.97.103002

Mer information

Senast uppdaterat

2018-06-18