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Richard Diurba
MicroBooNE uses a liquid argon time projection chamber (LArTPC) for simultaneous tracking and calorimetry. Neutrino oscillation experiments plan to use LArTPCs over the next several decades. A challenge for these current and future experiments lies in ch...
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Mehmet Tosun, Burak Bilki, Fatma Boran, Furkan Dolek and Kutlu Kagan Sahbaz
The majority of future large-scale neutrino and dark matter experiments are based on liquid argon detectors. Since liquid argon is also a very effective scintillator, these experiments also have light detection systems. The liquid argon scintillation wav...
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Marcin Kuzniak and Andrzej M. Szelc
Wavelength shifters and their applications for liquid argon detectors have been a subject of extensive R&D procedures over the past decade. This work reviews the most recent results in this field. We compare the optical properties and usage details t...
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Matthew Szydagis, Grant A. Block, Collin Farquhar, Alexander J. Flesher, Ekaterina S. Kozlova, Cecilia Levy, Emily A. Mangus, Michael Mooney, Justin Mueller, Gregory R. C. Rischbieter and Andrew K. Schwartz
Detectors based upon the noble elements, especially liquid xenon as well as liquid argon, as both single- and dual-phase types, require reconstruction of the energies of interacting particles, both in the field of direct detection of dark matter (weakly ...
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Alexey Buzulutskov
Electroluminescence and electron avalanching are the physical effects used in two-phase argon and xenon detectors for dark matter searches and neutrino detection, to amplify the primary ionization signal directly in cryogenic noble-gas media. We review t...
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Jonathan Asaadi, Martin Auger, Antonio Ereditato, Damian Goeldi, Umut Kose, Igor Kreslo, David Lorca, Matthias Luethi, Christoph Benjamin Urs Rudolf Von Rohr, James Sinclair, Francesca Stocker and Michele Weber
Traditional charge readout technologies of single-phase Liquid Argon Time projection Chambers (LArTPCs) based on projective wire readout introduce intrinsic ambiguities in event reconstruction. Combined with the slow response inherent in LArTPC detectors...
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Jonathan Asaadi, Martin Auger, Roman Berner, Alan Bross, Yifan Chen, Mark Convery, Laura Domine, Francois Drielsma, Daniel Dwyer, Antonio Ereditato, Damian Goeldi, Ran Itay, Dae Heun Koh, Samuel Kohn, Patrick Koller, Igor Kreslo, David Lorca, Peter Madigan, Christopher Marshall, Thomas Mettler, Francesco Piastra, James Sinclair, Hirohisa Tanaka, Kazuhiro Terao, Patrick Tsang, Tracy Usher, Michele Weber and Callum WilkinsonaddShow full author listremoveHide full author list
We develop a novel Time Projection Chamber (TPC) concept suitable for deployment in kilotonne-scale detectors, with a charge-readout system free from reconstruction ambiguities, and a robust TPC design that reduces high-voltage risks while increasing the...
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Corey Adams and Marco del Tutto
The amount and complexity of data recorded by high energy physics experiments are rapidly growing, and with these grow the difficulties in visualizing such data. To study the physics of neutrinos, a type of elementary particle, scientists use liquid argo...
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Adam Lowe, Krishanu Majumdar, Konstantinos Mavrokoridis, Barney Philippou, Adam Roberts, Christos Touramanis and Jared Vann
The ARIADNE Experiment, utilising a 1-ton dual-phase Liquid Argon Time Projection Chamber (LArTPC), aims to develop and mature optical readout technology for large scale LAr detectors. This paper describes the characterisation, using cosmic muons, of a T...
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Martin Auger, Yifan Chen, Antonio Ereditato, Damian Goeldi, Igor Kreslo, David Lorca, Matthias Luethi, Thomas Mettler, James Sinclair and Michele Weber
ArgonCube Light readout system (ArCLight) is a novel device for detecting scintillation light over large areas with Photon Detection Efficiency (PDE) of the order of a few percent. Its robust technological design allows for efficient use in large-volume ...
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