A large body of astrophysical observations indicate that around 85% of the matter in the universe is not made of recognized standard model particles. Understanding the nature of this so-called dark matter is of fundamental importance to cosmology, astrophysics, and high-energy particle physics. We examine the response of commonly used semiconductor materials to low-mass WIMP interactions using numerical simulations based on classical interatomic potentials in these materials. These simulations, backed up by more precise density functional theory simulations and experiments, predict a nonlinear energy loss that never produces phonons due to the nonzero energy required to form crystallographic defects. We argue that such nonlinear effects rel...
In solid-state dark matter detectors, energy accumulation due to ionizing radiation should produce d...
We extend the calculation of dark matter direct detection rates via electronic transitions in genera...
The Migdal effect inside detectors provides a new possibility of probing the sub-GeV dark matter (DM...
A large body of astrophysical observations indicate that around 85% of the matter in the universe is...
Many astrophysical observations indicate that nonbaryonic dark matter makes up around 85% of the tot...
We propose a method using solid state detectors with directional sensitivity to dark matter interact...
Recent progress in phonon-mediated detectors with eV-scale nuclear recoil energy sensitivity require...
In [1] we develop a non-relativistic effective field theory (NR-EFT) based framework with which rate...
The threshold displacement energy in solid state detector materials varies from several eV to ~100 e...
Direct-detection experiments for light dark matter are making enormous leaps in reaching previously ...
An excess of events of unknown origin at low energies below 1 keV has been observed in multiple low-...
Discovering the nature of dark matter (DM) remains one of the most important outstanding questions i...
Efforts to identify dark matter by detecting nuclear recoils produced by dark matter particles revea...
Recent progress in phonon-mediated detectors with eV-scale nuclear recoil energy sensitivity require...
The cryogenic dark matter search employs Ge and Si detectors to search for weakly interacting massiv...
In solid-state dark matter detectors, energy accumulation due to ionizing radiation should produce d...
We extend the calculation of dark matter direct detection rates via electronic transitions in genera...
The Migdal effect inside detectors provides a new possibility of probing the sub-GeV dark matter (DM...
A large body of astrophysical observations indicate that around 85% of the matter in the universe is...
Many astrophysical observations indicate that nonbaryonic dark matter makes up around 85% of the tot...
We propose a method using solid state detectors with directional sensitivity to dark matter interact...
Recent progress in phonon-mediated detectors with eV-scale nuclear recoil energy sensitivity require...
In [1] we develop a non-relativistic effective field theory (NR-EFT) based framework with which rate...
The threshold displacement energy in solid state detector materials varies from several eV to ~100 e...
Direct-detection experiments for light dark matter are making enormous leaps in reaching previously ...
An excess of events of unknown origin at low energies below 1 keV has been observed in multiple low-...
Discovering the nature of dark matter (DM) remains one of the most important outstanding questions i...
Efforts to identify dark matter by detecting nuclear recoils produced by dark matter particles revea...
Recent progress in phonon-mediated detectors with eV-scale nuclear recoil energy sensitivity require...
The cryogenic dark matter search employs Ge and Si detectors to search for weakly interacting massiv...
In solid-state dark matter detectors, energy accumulation due to ionizing radiation should produce d...
We extend the calculation of dark matter direct detection rates via electronic transitions in genera...
The Migdal effect inside detectors provides a new possibility of probing the sub-GeV dark matter (DM...