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Nuclear recoil energy scale in liquid xenon with application to the direct detection of dark matter

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arxiv 1101.6080 v1 pith:42RSZRLH submitted 2011-01-31 astro-ph.IM hep-ph

Nuclear recoil energy scale in liquid xenon with application to the direct detection of dark matter

classification astro-ph.IM hep-ph
keywords energynuclearliquidrecoilscintillationxenondarkdetection
verification ladder T0 review T1 audit T2 compute T3 formal T4 reserved
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We show for the first time that the quenching of electronic excitation from nuclear recoils in liquid xenon is well-described by Lindhard theory, if the nuclear recoil energy is reconstructed using the combined (scintillation and ionization) energy scale proposed by Shutt {\it et al.}. We argue for the adoption of this perspective in favor of the existing preference for reconstructing nuclear recoil energy solely from primary scintillation. We show that signal partitioning into scintillation and ionization is well-described by the Thomas-Imel box model. We discuss the implications for liquid xenon detectors aimed at the direct detection of dark matter.

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