activity
20132015
most citedSearch for Low-Mass WIMPs with SuperCDMS

529 citations · 943 across the 6 of their papers we have counts for

collaborators

8 papers

hep-ex2015★ 75 cited

Improved WIMP-search reach of the CDMS II germanium data

R. Agnese, A. J. Anderson, M. Asai +86

CDMS II data from the 5-tower runs at the Soudan Underground Laboratory were reprocessed with an improved charge-pulse fitting algorithm. Two new analysis techniques to reject surf…

astro-ph.CO2014★ 11 cited

Maximum Likelihood Analysis of Low Energy CDMS II Germanium Data

SuperCDMS Collaboration, R. Agnese, A. J. Anderson +84

We report on the results of a search for a Weakly Interacting Massive Particle (WIMP) signal in low-energy data of the Cryogenic Dark Matter Search (CDMS~II) experiment using a max…

hep-ex2014★ 24 cited

First direct limits on Lightly Ionizing Particles with electric charge less than

R. Agnese, A. J. Anderson, D. Balakishiyeva +82

While the Standard Model of particle physics does not include free particles with fractional charge, experimental searches have not ruled out their existence. We report results fro…

hep-ex2014★ 529 cited

Search for Low-Mass WIMPs with SuperCDMS

R. Agnese, A. J. Anderson, M. Asai +92

We report a first search for weakly interacting massive particles (WIMPs) using the background rejection capabilities of SuperCDMS. An exposure of 577 kg-days was analyzed for WIMP…

physics.ins-det2013★ 288 cited

CDMSlite: A Search for Low-Mass WIMPs using Voltage-Assisted Calorimetric Ionization Detection in the SuperCDMS Experiment

R. Agnese, A. J. Anderson, M. Asai +77

SuperCDMS is an experiment designed to directly detect Weakly Interacting Massive Particles (WIMPs), a favored candidate for dark matter ubiquitous in the Universe. In this paper,…

physics.ins-det2013★ 16 cited

Demonstration of Surface Electron Rejection with Interleaved Germanium Detectors for Dark Matter Searches

R. Agnese, A. J. Anderson, D. Balakishiyeva +88

The SuperCDMS experiment in the Soudan Underground Laboratory searches for dark matter with a 9-kg array of cryogenic germanium detectors. Symmetric sensors on opposite sides measu…