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Ionization electron signal processing in single phase LArTPCs. Part I. Algorithm Description and quantitative evaluation with MicroBooNE simulation

Authors :
Adams, C
Adams, C
An, R
Anthony, J
Asaadi, J
Auger, M
Bagby, L
Balasubramanian, S
Baller, B
Barnes, C
Barr, G
Bass, M
Bay, F
Bhat, A
Bhattacharya, K
Bishai, M
Blake, A
Bolton, T
Camilleri, L
Caratelli, D
Fernandez, RC
Cavanna, F
Cerati, G
Chen, H
Chen, Y
Church, E
Cianci, D
Cohen, E
Collin, GH
Conrad, JM
Convery, M
Cooper-Troendle, L
Crespo-Anadón, JI
Tutto, MD
Devitt, D
Diaz, A
Dytman, S
Eberly, B
Ereditato, A
Sanchez, LE
Esquivel, J
Evans, JJ
Fadeeva, AA
Fleming, BT
Foreman, W
Furmanski, AP
Garcia-Gamez, D
Garvey, GT
Genty, V
Goeldi, D
Gollapinni, S
Gramellini, E
Greenlee, H
Grosso, R
Guenette, R
Guzowski, P
Hackenburg, A
Hamilton, P
Hen, O
Hewes, J
Hill, C
Ho, J
Horton-Smith, GA
Hourlier, A
Huang, EC
James, C
De Vries, JJ
Jiang, L
Johnson, RA
Joshi, J
Jostlein, H
Jwa, YJ
Kaleko, D
Karagiorgi, G
Ketchum, W
Kirby, B
Kirby, M
Kobilarcik, T
Kreslo, I
Li, Y
Lister, A
Littlejohn, BR
Lockwitz, S
Lorca, D
Louis, WC
Luethi, M
Lundberg, B
Luo, X
Marchionni, A
Marcocci, S
Mariani, C
Marshall, J
Caicedo, DAM
Mastbaum, A
Meddage, V
Miceli, T
Mills, GB
Mogan, A
Moon, J
Mooney, M
Moore, CD
Adams, C
Adams, C
An, R
Anthony, J
Asaadi, J
Auger, M
Bagby, L
Balasubramanian, S
Baller, B
Barnes, C
Barr, G
Bass, M
Bay, F
Bhat, A
Bhattacharya, K
Bishai, M
Blake, A
Bolton, T
Camilleri, L
Caratelli, D
Fernandez, RC
Cavanna, F
Cerati, G
Chen, H
Chen, Y
Church, E
Cianci, D
Cohen, E
Collin, GH
Conrad, JM
Convery, M
Cooper-Troendle, L
Crespo-Anadón, JI
Tutto, MD
Devitt, D
Diaz, A
Dytman, S
Eberly, B
Ereditato, A
Sanchez, LE
Esquivel, J
Evans, JJ
Fadeeva, AA
Fleming, BT
Foreman, W
Furmanski, AP
Garcia-Gamez, D
Garvey, GT
Genty, V
Goeldi, D
Gollapinni, S
Gramellini, E
Greenlee, H
Grosso, R
Guenette, R
Guzowski, P
Hackenburg, A
Hamilton, P
Hen, O
Hewes, J
Hill, C
Ho, J
Horton-Smith, GA
Hourlier, A
Huang, EC
James, C
De Vries, JJ
Jiang, L
Johnson, RA
Joshi, J
Jostlein, H
Jwa, YJ
Kaleko, D
Karagiorgi, G
Ketchum, W
Kirby, B
Kirby, M
Kobilarcik, T
Kreslo, I
Li, Y
Lister, A
Littlejohn, BR
Lockwitz, S
Lorca, D
Louis, WC
Luethi, M
Lundberg, B
Luo, X
Marchionni, A
Marcocci, S
Mariani, C
Marshall, J
Caicedo, DAM
Mastbaum, A
Meddage, V
Miceli, T
Mills, GB
Mogan, A
Moon, J
Mooney, M
Moore, CD
Source :
Journal of Instrumentation; vol 13, iss 7, P07006-P07006; 1748-0221
Publication Year :
2018

Abstract

We describe the concept and procedure of drifted-charge extraction developed in the MicroBooNE experiment, a single-phase liquid argon time projection chamber (LArTPC). This technique converts the raw digitized TPC waveform to the number of ionization electrons passing through a wire plane at a given time. A robust recovery of the number of ionization electrons from both induction and collection anode wire planes will augment the 3D reconstruction, and is particularly important for tomographic reconstruction algorithms. A number of building blocks of the overall procedure are described. The performance of the signal processing is quantitatively evaluated by comparing extracted charge with the true charge through a detailed TPC detector simulation taking into account position-dependent induced current inside a single wire region and across multiple wires. Some areas for further improvement of the performance of the charge extraction procedure are also discussed.

Details

Database :
OAIster
Journal :
Journal of Instrumentation; vol 13, iss 7, P07006-P07006; 1748-0221
Notes :
application/pdf, Journal of Instrumentation vol 13, iss 7, P07006-P07006 1748-0221
Publication Type :
Electronic Resource
Accession number :
edsoai.on1287338690
Document Type :
Electronic Resource