We review the current status of various programs developing phonon-mediated particle detectors for primary applications in particle and astrophysics. We begin with a brief summary and description of the general techniques employed by several of these groups. Experimental results on the detection of thermal phonons (e.g. using calorimeters) and athermal/ballistic phonons (e.g. using transition edge sensors or tunnel junctions) will be presented. Finally, we describe the design and operation of novel “hybrid” devices, and present results obtained with a cryogenic germanium hybrid detector which senses both phonons and ionization
We report on the performance of a 60 g Ge detector that measures both ionization and phonons at cryo...
We have developed a cryogenic heat and light detection system to investigate phonon and scintillatio...
We report on particle detection experiments using aluminum superconducting transition edge sensors d...
When an incident particle collides with an electron or nucleus in an insulating crystal, the recoil ...
We are developing low temperature particle detectors in which the ionization and the phonons created...
We are developing a new class of elementary particle detectors capable of sensing weakly interacting...
We are developing silicon crystal acoustic detectors (SiCADs), which operate at cryogenic temperatur...
We are developing athermal-phonon mediated particle detectors using microwave kinetic inductance det...
We are developing an entirely new type of particle detector, called a silicon crystal acoustic detec...
We have demonstrated a new phonon sensor design based on aluminum phonon collection pads connected t...
Alpha particle interactions with crystalline silicon at approximately 400 mK, which produce phonons,...
We are developing athermal-phonon mediated particle detectors that utilize microwave kinetic inducta...
We discuss the prompt (ballistic and quasidiffuse) phonon physics associated with elementary particl...
Our group at Stanford is developing a new class of elementary particles detectors capable of sensing...
We have observed the ballistic-phonon-focusing pattern along the [100] axis of a 1-mm-thick silicon ...
We report on the performance of a 60 g Ge detector that measures both ionization and phonons at cryo...
We have developed a cryogenic heat and light detection system to investigate phonon and scintillatio...
We report on particle detection experiments using aluminum superconducting transition edge sensors d...
When an incident particle collides with an electron or nucleus in an insulating crystal, the recoil ...
We are developing low temperature particle detectors in which the ionization and the phonons created...
We are developing a new class of elementary particle detectors capable of sensing weakly interacting...
We are developing silicon crystal acoustic detectors (SiCADs), which operate at cryogenic temperatur...
We are developing athermal-phonon mediated particle detectors using microwave kinetic inductance det...
We are developing an entirely new type of particle detector, called a silicon crystal acoustic detec...
We have demonstrated a new phonon sensor design based on aluminum phonon collection pads connected t...
Alpha particle interactions with crystalline silicon at approximately 400 mK, which produce phonons,...
We are developing athermal-phonon mediated particle detectors that utilize microwave kinetic inducta...
We discuss the prompt (ballistic and quasidiffuse) phonon physics associated with elementary particl...
Our group at Stanford is developing a new class of elementary particles detectors capable of sensing...
We have observed the ballistic-phonon-focusing pattern along the [100] axis of a 1-mm-thick silicon ...
We report on the performance of a 60 g Ge detector that measures both ionization and phonons at cryo...
We have developed a cryogenic heat and light detection system to investigate phonon and scintillatio...
We report on particle detection experiments using aluminum superconducting transition edge sensors d...