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LUX likelihood and limits on spin-independent and spin-dependent WIMP couplings with LUXCalc

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arxiv 1502.02667 v3 pith:DQ7CQ54D submitted 2015-02-09 hep-ph astro-ph.IMphysics.data-an

LUX likelihood and limits on spin-independent and spin-dependent WIMP couplings with LUXCalc

classification hep-ph astro-ph.IMphysics.data-an
keywords couplingsdarkmatterlimitsluxcalcresultsspin-dependentstandard
verification ladder T0 review T1 audit T2 compute T3 formal T4 reserved
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We present LUXCalc, a new utility for calculating likelihoods and deriving WIMP-nucleon coupling limits from the recent results of the LUX direct search dark matter experiment. After a brief review of WIMP-nucleon scattering, we derive LUX limits on the spin-dependent WIMP-nucleon couplings over a broad range of WIMP masses, under standard assumptions on the relevant astrophysical parameters. We find that, under these and other common assumptions, LUX excludes the entire spin-dependent parameter space consistent with a dark matter interpretation of DAMA's anomalous signal, the first time a single experiment has been able to do so. We also revisit the case of spin-independent couplings, and demonstrate good agreement between our results and the published LUX results. Finally, we derive constraints on the parameters of an effective dark matter theory in which a spin-1 mediator interacts with a fermionic WIMP and Standard Model fermions via axial-vector couplings. A detailed appendix describes the use of LUXCalc with standard codes to place constraints on generic dark matter theories.

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