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Loop effects in direct detection
DOI:10.1088/1475-7516/2018/08/017.png)
Abstract
En 中文
We consider loop level contributions to dark matter - nucleon scattering in cases where the spin independent scattering cross section is absent or suppressed at tree level. In the case of a pseudoscalar interaction, for which the tree level cross section is both spin-dependent and suppressed by 4 powers of the exchanged momentum, loop diagrams give rise to a non-zero spin independent cross section. We show that if the pseudoscalar interaction is formulated using a gauge invariant framework, loop effects generate an effective (chi) over bar chi h vertex and result in a scattering cross section that is within reach of current or forthcoming experiments. We also consider the case of inelastic dark matter, for which the dominant interaction terms have an off diagonal chi 1 - chi 2 structure. In this case, the tree-level direct detection cross section is negligible when the inelastic chi 1N -> chi 2N process is kinematically suppressed. However, loop diagrams generate a diagonal chi 1 - chi 1 interaction and hence permit measurable, spin independent, chi 1N -> chi 1N elastic scattering. As such, we are able to probe parameter space that was previously considered inaccessible to direct detection.
Keywords:
dark matter theory
dark matter experiments
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