Global limits and interference patterns in dark matter direct detection

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Abstract

We compare the general effective theory of one-body dark matter nucleon interactions to current direct detection experiments in a global multidimensional statistical analysis. We derive exclusion limits on the 28 isoscalar and isovector coupling constants of the theory, and show that current data place interesting constraints on dark matter-nucleon interaction operators usually neglected in this context. We characterize the interference patterns that can arise in dark matter direct detection from pairs of dark matter-nucleon interaction operators, or from isoscalar and isovector components of the same operator. We find that commonly neglected destructive interference effects weaken standard direct detection exclusion limits by up to one order of magnitude in the coupling constants.

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Catena, R., & Gondolo, P. (2015). Global limits and interference patterns in dark matter direct detection. Journal of Cosmology and Astroparticle Physics, 2015(8). https://doi.org/10.1088/1475-7516/2015/08/022

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