SuperCDMS SNOLAB will be a next-generation experiment aimed at directly detecting low-mass particles (with masses ≤10 GeV/c^{2}) that may constitute dark matter by using cryogenic detectors of two types (HV and iZIP) and two target materials (germanium and silicon). The experiment is being designed with an initial sensitivity to nuclear recoil cross sections ∼1×10^{-43} cm^{2} for a dark matter particle mass of 1 GeV/c^{2}, and with capacity to continue exploration to both smaller masses and better sensitivities. The phonon sensitivity of the HV detectors will be sufficient to detect nuclear recoils from sub-GeV dark matter. A detailed calibration of the detector response to low-energy recoils will be needed to optimize running condition...
This article presents an analysis and the resulting limits on light dark matter inelastically scatte...
As the CDMS (Cryogenic Dark Matter Search) experiment is scaled up to tackle new dark matter paramet...
The CDMS experiment aims to directly detect massive, cold dark matter particles originating from the...
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 (\u3c 10 ...
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...
Years of astrophysical observations suggest that dark matter comprises more than ~80 % of all matter...
Years of astrophysical observations suggest that dark matter comprises more than ~80 % of all matter...
Years of astrophysical observations suggest that dark matter comprises more than ~80 % of all matter...
Years of astrophysical observations suggest that dark matter comprises more than ~80 % of all matter...
Years of astrophysical observations suggest that dark matter comprises more than ~80 % of all matter...
Years of astrophysical observations suggest that dark matter comprises more than ~80 % of all matter...
Years of astrophysical observations suggest that dark matter comprises more than ~80 % of all matter...
Years of astrophysical observations suggest that dark matter comprises more than ~80 % of all matter...
This article presents an analysis and the resulting limits on light dark matter inelastically scatte...
As the CDMS (Cryogenic Dark Matter Search) experiment is scaled up to tackle new dark matter paramet...
The CDMS experiment aims to directly detect massive, cold dark matter particles originating from the...
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 (\u3c 10 ...
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...
Years of astrophysical observations suggest that dark matter comprises more than ~80 % of all matter...
Years of astrophysical observations suggest that dark matter comprises more than ~80 % of all matter...
Years of astrophysical observations suggest that dark matter comprises more than ~80 % of all matter...
Years of astrophysical observations suggest that dark matter comprises more than ~80 % of all matter...
Years of astrophysical observations suggest that dark matter comprises more than ~80 % of all matter...
Years of astrophysical observations suggest that dark matter comprises more than ~80 % of all matter...
Years of astrophysical observations suggest that dark matter comprises more than ~80 % of all matter...
Years of astrophysical observations suggest that dark matter comprises more than ~80 % of all matter...
This article presents an analysis and the resulting limits on light dark matter inelastically scatte...
As the CDMS (Cryogenic Dark Matter Search) experiment is scaled up to tackle new dark matter paramet...
The CDMS experiment aims to directly detect massive, cold dark matter particles originating from the...