International audienceThe excellent energy resolution and low threshold of cryogenic detectors have brought them to the forefront of the search for low-mass Weakly Interacting Massive Particles. The next generation of large cryogenic detectors for dark matter search promises further improvements in sensitivity, yet it is difficult and in some cases impossible to test and fully characterize these detectors in an unshielded environment. Therefore, the Queen’s SuperCDMS team is installing a well shielded Cryogenic Underground detector TEst facility (CUTE) at SNOLAB to support detector testing and characterization for SuperCDMS and future cryogenic rare event search experiments. Significant effort is put into achieving a very low background env...
SNOLAB is a 5000 m2 ~m^2 facility 2 km underground in Sudbury, Ontario, Canada. Operating in an acti...
We discuss the status of a cryogenic dark matter search beginning operation in the Stanford Undergro...
SuperCDMS is a direct-detection dark matter (DM) experiment that uses cryogenically cooled germanium...
International audienceThe excellent energy resolution and low threshold of cryogenic detectors have ...
International audienceThe excellent energy resolution and low threshold of cryogenic detectors have ...
International audienceThe excellent energy resolution and low threshold of cryogenic detectors have ...
International audienceThe excellent energy resolution and low threshold of cryogenic detectors have ...
International audienceThe excellent energy resolution and low threshold of cryogenic detectors have ...
International audienceThe excellent energy resolution and low threshold of cryogenic detectors have ...
International audienceThe Cryogenic Underground Test (CUTE) facility will be located 2 km undergroun...
International audienceThe Cryogenic Underground Test (CUTE) facility will be located 2 km undergroun...
International audienceThe Cryogenic Underground Test (CUTE) facility will be located 2 km undergroun...
International audienceThe Cryogenic Underground Test (CUTE) facility will be located 2 km undergroun...
SuperCDMS SNOLAB will be a next-generation experiment aimed at directly detecting low-mass particles...
SuperCDMS SNOLAB will be a next-generation experiment aimed at directly detecting low-mass particles...
SNOLAB is a 5000 m2 ~m^2 facility 2 km underground in Sudbury, Ontario, Canada. Operating in an acti...
We discuss the status of a cryogenic dark matter search beginning operation in the Stanford Undergro...
SuperCDMS is a direct-detection dark matter (DM) experiment that uses cryogenically cooled germanium...
International audienceThe excellent energy resolution and low threshold of cryogenic detectors have ...
International audienceThe excellent energy resolution and low threshold of cryogenic detectors have ...
International audienceThe excellent energy resolution and low threshold of cryogenic detectors have ...
International audienceThe excellent energy resolution and low threshold of cryogenic detectors have ...
International audienceThe excellent energy resolution and low threshold of cryogenic detectors have ...
International audienceThe excellent energy resolution and low threshold of cryogenic detectors have ...
International audienceThe Cryogenic Underground Test (CUTE) facility will be located 2 km undergroun...
International audienceThe Cryogenic Underground Test (CUTE) facility will be located 2 km undergroun...
International audienceThe Cryogenic Underground Test (CUTE) facility will be located 2 km undergroun...
International audienceThe Cryogenic Underground Test (CUTE) facility will be located 2 km undergroun...
SuperCDMS SNOLAB will be a next-generation experiment aimed at directly detecting low-mass particles...
SuperCDMS SNOLAB will be a next-generation experiment aimed at directly detecting low-mass particles...
SNOLAB is a 5000 m2 ~m^2 facility 2 km underground in Sudbury, Ontario, Canada. Operating in an acti...
We discuss the status of a cryogenic dark matter search beginning operation in the Stanford Undergro...
SuperCDMS is a direct-detection dark matter (DM) experiment that uses cryogenically cooled germanium...