Large liquid argon time projection chambers (LArTPCs), especially those operating near the surface, are susceptible to space charge effects. In the context of LArTPCs, the space charge effect is the build-up of slow-moving positive ions in the detector primarily due to ionization from cosmic rays, leading to a distortion of the electric field within the detector. This effect leads to a displacement in the reconstructed position of signal ionization electrons in LArTPC detectors (“spatial distortions”), as well as to variations in the amount of electron-ion recombination experienced by ionization throughout the volume of the TPC. We present techniques that can be used to measure and correct for space charge effects in large LArTPCs by making...
Tracking capabilities in Time Projection Chambers (TPCs) are strongly dictated by the homogeneity of...
Primary challenges for current and future precision neutrino experiments using liquid argon time pro...
Liquid Argon Time Projection Chambers (LArTPCs) are ideally suited to perform long-baseline neutrino...
We describe a method used to calibrate the position- and time-dependent response of the MicroBooNE l...
The accumulation of positive ions, produced by ionizing particles crossing Liquid Argon Time Project...
Liquid argon time projection chambers (LArTPCs) are now a standard detector technology for making ac...
We describe a method used to calibrate the position- and time-dependent response of the MicroBooNE l...
Abstract Accurate knowledge of electron transport properties is vital to understandi...
Space charge in Liquid Argon Time Projection Chamber is due to the accumu- lation of positive ions, ...
The single-phase liquid argon time projection chamber (LArTPC) provides a large amount of detailed i...
The single-phase liquid argon time projection chamber (LArTPC) provides a large amount of detailed i...
Liquid Argon Time Projection Chambers (LArTPCs) have become widely used neutrino detectors. They pri...
ProtoDUNE-SP is a Liquid LArTPC built at the CERN neutrino platform. In a LArTPC many factors, inclu...
The MicroBooNE detector is a liquid argon time projection chamber at Fermilab designed to study shor...
Liquid Argon Time Projection Chamber (LArTPC) detectors observe ionization electrons to measure char...
Tracking capabilities in Time Projection Chambers (TPCs) are strongly dictated by the homogeneity of...
Primary challenges for current and future precision neutrino experiments using liquid argon time pro...
Liquid Argon Time Projection Chambers (LArTPCs) are ideally suited to perform long-baseline neutrino...
We describe a method used to calibrate the position- and time-dependent response of the MicroBooNE l...
The accumulation of positive ions, produced by ionizing particles crossing Liquid Argon Time Project...
Liquid argon time projection chambers (LArTPCs) are now a standard detector technology for making ac...
We describe a method used to calibrate the position- and time-dependent response of the MicroBooNE l...
Abstract Accurate knowledge of electron transport properties is vital to understandi...
Space charge in Liquid Argon Time Projection Chamber is due to the accumu- lation of positive ions, ...
The single-phase liquid argon time projection chamber (LArTPC) provides a large amount of detailed i...
The single-phase liquid argon time projection chamber (LArTPC) provides a large amount of detailed i...
Liquid Argon Time Projection Chambers (LArTPCs) have become widely used neutrino detectors. They pri...
ProtoDUNE-SP is a Liquid LArTPC built at the CERN neutrino platform. In a LArTPC many factors, inclu...
The MicroBooNE detector is a liquid argon time projection chamber at Fermilab designed to study shor...
Liquid Argon Time Projection Chamber (LArTPC) detectors observe ionization electrons to measure char...
Tracking capabilities in Time Projection Chambers (TPCs) are strongly dictated by the homogeneity of...
Primary challenges for current and future precision neutrino experiments using liquid argon time pro...
Liquid Argon Time Projection Chambers (LArTPCs) are ideally suited to perform long-baseline neutrino...