DarkSide is a multi-stage program devoted to direct searches of Dark Matter particles with detectors based on double phase liquid Argon Time Projection Chamber. The DarkSide-50 setup is running underground at the Laboratori Nazionali del Gran Sasso. First it was operated with Atmospheric Argon and during that run (1422 67) kgd of truly background-free exposure has been accumulated. Obtained data made it possible to set a 90% C.L. upper limit on the WIMP-nucleon cross section of 6:11044 cm2 (for a WIMP mass of 100 GeV/c2). Presently the detector is lled with Underground Argon, which is depleted in 39Ar by a factor of (1.4 0.2)103 with respect to Atmospheric Argon. Acquired so far (2616 43) kgd (71 live days) in combination with the data from the Atmospheric Argon run give us the 90% C.L. upper limit on the WIMP-nucleon spin-independent cross section of 2:01044 cm2 for a WIMP mass of 100 GeV/c2. Up to date this is the best limit obtained with an argon target.

The DarkSide Experiment: Present Status and Future

ORTICA, Fausto;PELLICCIA, Nicomede;ROMANI, Aldo;
2017

Abstract

DarkSide is a multi-stage program devoted to direct searches of Dark Matter particles with detectors based on double phase liquid Argon Time Projection Chamber. The DarkSide-50 setup is running underground at the Laboratori Nazionali del Gran Sasso. First it was operated with Atmospheric Argon and during that run (1422 67) kgd of truly background-free exposure has been accumulated. Obtained data made it possible to set a 90% C.L. upper limit on the WIMP-nucleon cross section of 6:11044 cm2 (for a WIMP mass of 100 GeV/c2). Presently the detector is lled with Underground Argon, which is depleted in 39Ar by a factor of (1.4 0.2)103 with respect to Atmospheric Argon. Acquired so far (2616 43) kgd (71 live days) in combination with the data from the Atmospheric Argon run give us the 90% C.L. upper limit on the WIMP-nucleon spin-independent cross section of 2:01044 cm2 for a WIMP mass of 100 GeV/c2. Up to date this is the best limit obtained with an argon target.
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Utilizza questo identificativo per citare o creare un link a questo documento: https://hdl.handle.net/11391/1408494
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