The ratio of the scintillation intensity in the near-infrared (NIR) and in the vacuum-ultraviolet (VUV) from liquid argon with a volumetric fraction of $10^{-5}$ of xenon (10 ppm) was studied with ion-beam excitation. Hydrogen, lithium, carbon, sulfur, and iodine ions from the Munich Tandem accelerator were used for excitation. Average linear energy transfer (LET) values from 4.4 to 3500 MeV /mm were tested by the experiments. A variation of the NIR to VUV intensity ratios by a factor of ${\sim}$ 20 was observed. This is a promising result for the development of liquid argon-xenon detectors with sole optical particle identification and background reduction in rare-event physics. The results are interpreted on the basis of energy deposition...
The response of liquid xenon to low-energy electronic recoils is relevant in the search for dark-mat...
We have measured the scintillation and ionization yield of recoiling nuclei in liquid argon as a fun...
Abstract We performed a time-resolved spectroscopic study of the VUV/UV scintillation of gaseous arg...
Vacuum ultraviolet light emission from xenon-doped liquid argon is described in the context of liqui...
The scintillation light of liquid argon has been recorded wavelength and time resolved with very goo...
Results of transmission experiments of vacuum ultraviolet light through a 11.6 cm long cell filled w...
XENON10 is an experiment designed to directly detect particle dark matter. It is a dual phase (liqui...
The time dependence of the vacuum ultraviolet emissions from mixtures of xenon and argon gases is me...
Intense infrared (IR) light emission from liquid Ar-Xe mixtures has been observed using 12 keV elect...
The study of primary and secondary scintillations in noble gases and liquids is of paramount importa...
Argon has advantages over xenon in cost, kinetic matching, and ease-of-purification when used as a t...
Liquid Xenon (LXe) is expected to be an excellent target and detector medium to search for dark matt...
We detected the ionization charge and the scintillation light produced in liquid xenon by the intera...
Robust results of WIMP direct detection experiments depend on firm understandings of nuclear recoils...
We report the first measurements of the absolute ionization yield of nuclear recoils in liquid xenon...
The response of liquid xenon to low-energy electronic recoils is relevant in the search for dark-mat...
We have measured the scintillation and ionization yield of recoiling nuclei in liquid argon as a fun...
Abstract We performed a time-resolved spectroscopic study of the VUV/UV scintillation of gaseous arg...
Vacuum ultraviolet light emission from xenon-doped liquid argon is described in the context of liqui...
The scintillation light of liquid argon has been recorded wavelength and time resolved with very goo...
Results of transmission experiments of vacuum ultraviolet light through a 11.6 cm long cell filled w...
XENON10 is an experiment designed to directly detect particle dark matter. It is a dual phase (liqui...
The time dependence of the vacuum ultraviolet emissions from mixtures of xenon and argon gases is me...
Intense infrared (IR) light emission from liquid Ar-Xe mixtures has been observed using 12 keV elect...
The study of primary and secondary scintillations in noble gases and liquids is of paramount importa...
Argon has advantages over xenon in cost, kinetic matching, and ease-of-purification when used as a t...
Liquid Xenon (LXe) is expected to be an excellent target and detector medium to search for dark matt...
We detected the ionization charge and the scintillation light produced in liquid xenon by the intera...
Robust results of WIMP direct detection experiments depend on firm understandings of nuclear recoils...
We report the first measurements of the absolute ionization yield of nuclear recoils in liquid xenon...
The response of liquid xenon to low-energy electronic recoils is relevant in the search for dark-mat...
We have measured the scintillation and ionization yield of recoiling nuclei in liquid argon as a fun...
Abstract We performed a time-resolved spectroscopic study of the VUV/UV scintillation of gaseous arg...