English

Interpreting Dark Matter Direct Detection Independently of the Local Velocity and Density Distribution

High Energy Physics - Phenomenology 2011-02-18 v1

Abstract

We demonstrate precisely what particle physics information can be extracted from a single direct detection observation of dark matter while making absolutely no assumptions about the local velocity distribution and local density of dark matter. Our central conclusions follow from a very simple observation: the velocity distribution of dark matter is positive definite, f(v) >= 0. We demonstrate the utility of this result in several ways. First, we show a falling deconvoluted recoil spectrum (deconvoluted of the nuclear form factor), such as from ordinary elastic scattering, can be "mocked up" by any mass of dark matter above a kinematic minimum. As an example, we show that dark matter much heavier than previously considered can explain the CoGeNT excess. Specifically, m_chi < m_Ge} can be in just as good agreement as light dark matter, while m_\chi > m_Ge depends on understanding the sensitivity of Xenon to dark matter at very low recoil energies, E_R ~ 6 keVnr. Second, we show that any rise in the deconvoluted recoil spectrum represents distinct particle physics information that cannot be faked by an arbitrary f(v). As examples of resulting non-trivial particle physics, we show that inelastic dark matter and dark matter with a form factor can both yield such a rise.

Keywords

Cite

@article{arxiv.1011.1910,
  title  = {Interpreting Dark Matter Direct Detection Independently of the Local Velocity and Density Distribution},
  author = {Patrick J. Fox and Graham D. Kribs and Tim M. P. Tait},
  journal= {arXiv preprint arXiv:1011.1910},
  year   = {2011}
}