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Nuclear scattering of dark matter coupled to a new light scalar

Authors :
Finkbeiner, Douglas
Slatyer, Tracy R.
Weiner, Neal
Source :
Quick submit: 2017-05-17T11:55:13-0400, Finkbeiner, Douglas P., Tracy R. Slatyer, and Neal Weiner. 2008. “Nuclear Scattering of Dark Matter Coupled to a New Light Scalar.” Physical Review D 78 (11) (December 8). doi:10.1103/physrevd.78.116006.
Publication Year :
2008
Publisher :
American Physical Society (APS), 2008.

Abstract

We consider the nuclear scattering cross section for the eXciting Dark Matter (XDM) model. In XDM, the Weakly Interacting Massive Particles (WIMPs) couple to the Standard Model only via an intermediate light scalar which mixes with the Higgs: this leads to a suppression in the nuclear scattering cross section relative to models in which the WIMPs couple to the Higgs directly. We estimate this suppression factor to be of order 10^(-5). The elastic nuclear scattering cross section for XDM can also be computed directly: we perform this computation for XDM coupled to the Higgs sector of the Standard Model and find a spin-independent cross section in the order of 4 x 10^(-13) pb in the decoupling limit, which is not within the range of any near-term direct detection experiments. However, if the XDM dark sector is instead coupled to a two-Higgs-doublet model, the spin-independent nuclear scattering cross section can be enhanced by up to four orders of magnitude for large tan(beta), which should be observable in the upcoming SuperCDMS and ton-scale xenon experiments.<br />Astronomy

Details

Language :
English
ISSN :
15507998
Database :
Digital Access to Scholarship at Harvard (DASH)
Journal :
Quick submit: 2017-05-17T11:55:13-0400, Finkbeiner, Douglas P., Tracy R. Slatyer, and Neal Weiner. 2008. “Nuclear Scattering of Dark Matter Coupled to a New Light Scalar.” Physical Review D 78 (11) (December 8). doi:10.1103/physrevd.78.116006.
Publication Type :
Academic Journal
Accession number :
edshld.1.33461885
Document Type :
Journal Article
Full Text :
https://doi.org/10.1103/physrevd.78.116006