activity
19982026
most citedResults from a Low-Energy Analysis of the CDMS II Germanium Data

518 citations · 2.2k across the 53 of their papers we have counts for

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Showing 2019Show all

10 papers · 1 filter

nucl-ex2019

Modeling of GERDA Phase II data

GERDA collaboration, Matteo Agostini, Alexander M. Bakalyarov +107

The GERmanium Detector Array (GERDA) experiment at the Gran Sasso underground laboratory (LNGS) of INFN is searching for neutrinoless double-beta () decay of Ge. The t…

nucl-ex2019

Testing claims of the GW170817 binary neutron star inspiral affecting -decay rates

P. A. Breur, J. C. P. Y. Nobelen, L. Baudis +11

On August 17, 2017, the first gravitational wave signal from a binary neutron star inspiral (GW170817) was detected by Advanced LIGO and Advanced VIRGO. Here we present radioactive…

hep-ex2019

Probing Majorana neutrinos with double- decay

GERDA collaboration, M. Agostini, A. M. Bakalyarov +111

A discovery that neutrinos are not the usual Dirac but Majorana fermions, i.e. identical to their antiparticles, would be a manifestation of new physics with profound implications…

hep-ex2019

Search for Light Dark Matter Interactions Enhanced by the Migdal effect or Bremsstrahlung in XENON1T

E. Aprile, J. Aalbers, F. Agostini +131

Direct dark matter detection experiments based on a liquid xenon target are leading the search for dark matter particles with masses above 5 GeV/c, but have limited sens…

hep-ex2019

Light Dark Matter Search with Ionization Signals in XENON1T

E. Aprile, J. Aalbers, F. Agostini +130

We report constraints on light dark matter (DM) models using ionization signals in the XENON1T experiment. We mitigate backgrounds with strong event selections, rather than requiri…

physics.ins-det2019

XENON1T Dark Matter Data Analysis: Signal Reconstruction, Calibration and Event Selection

E. Aprile, J. Aalbers, F. Agostini +125

The XENON1T experiment at the Laboratori Nazionali del Gran Sasso is the most sensitive direct detection experiment for dark matter in the form of weakly interacting particles (WIM…