We report on the response of liquid xenon to low energy electronic recoils below 15 keV from beta decays of tritium at drift fields of 92 V/cm, 154 V/cm and 366 V/cm using the XENON100 detector. A data-to-simulation fitting method based on Markov Chain Monte Carlo is used to extract the photon yields and recombination fluctuations from the experimental data. The photon yields measured at the two lower fields are in agreement with those from literature; additional measurements at a higher field of 366 V/cm are presented. The electronic and nuclear recoil discrimination as well as its dependence on the drift field and photon detection efficiency are investigated at these low energies. The results provide new measurements in the energy region ...
We report the first measurements of the absolute ionization yield of nuclear recoils in liquid xenon...
An ever-growing body of evidence suggests that dark matter exists and is abundant in our universe. A...
We present an updated model of light and charge yields from nuclear recoils in liquid xenon with a s...
We report on the response of liquid xenon to low energy electronic recoils below 15 keV from beta de...
International audienceWe report on the response of liquid xenon to low energy electronic recoils bel...
The response of liquid xenon to low-energy electronic recoils is relevant in the search for dark-mat...
We present a comprehensive analysis of electronic recoil vs nuclear recoil discrimination in liquid/...
This work presents an analysis of monoenergetic electronic recoil peaks in the dark-matter-search an...
Liquid Xenon (LXe) is expected to be an excellent target and detector medium to search for dark matt...
We present measurements of the scintillation pulse shape in liquid xenon for nuclear recoils (NR) an...
We extend the study of the performance of a prototype two-phase liquid xenon WIMP dark matter detect...
We report the first measurements of the absolute ionization yield of nuclear recoils in liquid xenon...
An ever-growing body of evidence suggests that dark matter exists and is abundant in our universe. A...
We present an updated model of light and charge yields from nuclear recoils in liquid xenon with a s...
We report on the response of liquid xenon to low energy electronic recoils below 15 keV from beta de...
International audienceWe report on the response of liquid xenon to low energy electronic recoils bel...
The response of liquid xenon to low-energy electronic recoils is relevant in the search for dark-mat...
We present a comprehensive analysis of electronic recoil vs nuclear recoil discrimination in liquid/...
This work presents an analysis of monoenergetic electronic recoil peaks in the dark-matter-search an...
Liquid Xenon (LXe) is expected to be an excellent target and detector medium to search for dark matt...
We present measurements of the scintillation pulse shape in liquid xenon for nuclear recoils (NR) an...
We extend the study of the performance of a prototype two-phase liquid xenon WIMP dark matter detect...
We report the first measurements of the absolute ionization yield of nuclear recoils in liquid xenon...
An ever-growing body of evidence suggests that dark matter exists and is abundant in our universe. A...
We present an updated model of light and charge yields from nuclear recoils in liquid xenon with a s...