Master of ScienceDepartment of PhysicsGlenn A. Horton-SmithNeutrinos are an interesting type of particle that could provide insight to unanswered questions such as the imbalance of matter and antimatter in the universe. However, they’re difficult, if not impossible, to detect directly. Modern particle physics experiments build detectors called Liquid Argon Time Projection Chambers (LArTPCs) that detect the products of neutrino interactions. Due to various processes that take place within the detector, the data that comes out of these detectors ends up being distorted; various calibration techniques are necessary to ensure that the data is accurate and undistorted. All of these aspects of LArTPCs are complex on their own, let alone when they...
The Liquid Argon Time Projection Chamber offers an innovative technology for a new class of massive ...
In this paper we give a thorough description of a liquid argon time projection chamber designed, bui...
In this white paper, we outline some of the scientific opportunities and challenges related to detec...
Master of ScienceDepartment of PhysicsGlenn A. Horton-SmithNeutrinos are an interesting type of part...
Liquid Argon (LAr) is one of the most widely used scintillators in particle detection, due to its lo...
ABSTRACT: The Liquid Argon Time Projection Chamber (LArTPC) is a prime type of detector for future l...
Liquid Argon Time Projection Chamber detectors are ideally suited for studying neutrino interactions...
Abstract. ArgoNeuT, a Liquid Argon Time Projection Chamber in the NuMI beamline at Fermilab, has rec...
Neutrinos are elementary particles that allow for the study of some of the most fundamental question...
A workshop was held at Fermilab on March 20-21, 2013 to discuss the development of liquid argon time...
The liquid argon time projection chamber (LArTPC) technology offers fine-grained tracking along with...
Doctor of PhilosophyDepartment of PhysicsGlenn A. Horton-SmithThe MicroBooNE experiment at Fermilab ...
Liquid Argon Time Projection Chamber (LAr TPC) detectors are ideally suited for studying neutrino in...
Liquid Argon Time Projection Chamber detectors are ideally suited for studying neutrino interactions...
Michael Schenk evaluates new technologies and methods, such as cryogenic read-out electronics and a ...
The Liquid Argon Time Projection Chamber offers an innovative technology for a new class of massive ...
In this paper we give a thorough description of a liquid argon time projection chamber designed, bui...
In this white paper, we outline some of the scientific opportunities and challenges related to detec...
Master of ScienceDepartment of PhysicsGlenn A. Horton-SmithNeutrinos are an interesting type of part...
Liquid Argon (LAr) is one of the most widely used scintillators in particle detection, due to its lo...
ABSTRACT: The Liquid Argon Time Projection Chamber (LArTPC) is a prime type of detector for future l...
Liquid Argon Time Projection Chamber detectors are ideally suited for studying neutrino interactions...
Abstract. ArgoNeuT, a Liquid Argon Time Projection Chamber in the NuMI beamline at Fermilab, has rec...
Neutrinos are elementary particles that allow for the study of some of the most fundamental question...
A workshop was held at Fermilab on March 20-21, 2013 to discuss the development of liquid argon time...
The liquid argon time projection chamber (LArTPC) technology offers fine-grained tracking along with...
Doctor of PhilosophyDepartment of PhysicsGlenn A. Horton-SmithThe MicroBooNE experiment at Fermilab ...
Liquid Argon Time Projection Chamber (LAr TPC) detectors are ideally suited for studying neutrino in...
Liquid Argon Time Projection Chamber detectors are ideally suited for studying neutrino interactions...
Michael Schenk evaluates new technologies and methods, such as cryogenic read-out electronics and a ...
The Liquid Argon Time Projection Chamber offers an innovative technology for a new class of massive ...
In this paper we give a thorough description of a liquid argon time projection chamber designed, bui...
In this white paper, we outline some of the scientific opportunities and challenges related to detec...