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Induced signals in particle detectors with resistive elements: Numerically modeling novel structures (VCI 2022)

For detectors with resistive elements, the time dependence of the signals is not solely given by the movement of the charges in the drift medium but also by the time-dependent reaction of the resistive materials. In this report, we present a numerical way to capture this contribution by using the ex...

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Detalles Bibliográficos
Autores principales: Janssens, D, Brunbauer, F, D'Hondt, J, Floethner, K J, Lisowska, M, Muller, H, Oliveri, E, Orlandini, G, Riegler, W, Ropelewski, L, Schindler, H, Scharenberg, L, Utrobicic, A, Veenhof, R
Lenguaje:eng
Publicado: 2022
Materias:
Acceso en línea:https://dx.doi.org/10.1016/j.nima.2022.167227
http://cds.cern.ch/record/2835869
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author Janssens, D
Brunbauer, F
D'Hondt, J
Floethner, K J
Lisowska, M
Muller, H
Oliveri, E
Orlandini, G
Riegler, W
Ropelewski, L
Schindler, H
Scharenberg, L
Utrobicic, A
Veenhof, R
author_facet Janssens, D
Brunbauer, F
D'Hondt, J
Floethner, K J
Lisowska, M
Muller, H
Oliveri, E
Orlandini, G
Riegler, W
Ropelewski, L
Schindler, H
Scharenberg, L
Utrobicic, A
Veenhof, R
author_sort Janssens, D
collection CERN
description For detectors with resistive elements, the time dependence of the signals is not solely given by the movement of the charges in the drift medium but also by the time-dependent reaction of the resistive materials. In this report, we present a numerical way to capture this contribution by using the extended form of the Ramo–Shockley theorem for conductive media. As an example, the methodology will be applied to the MicroCAT two-dimensional interpolation readout to calculate the center of gravity position reconstruction distortion map of its readout cells.
id cern-2835869
institution Organización Europea para la Investigación Nuclear
language eng
publishDate 2022
record_format invenio
spelling cern-28358692022-10-06T21:31:20Zdoi:10.1016/j.nima.2022.167227http://cds.cern.ch/record/2835869engJanssens, DBrunbauer, FD'Hondt, JFloethner, K JLisowska, MMuller, HOliveri, EOrlandini, GRiegler, WRopelewski, LSchindler, HScharenberg, LUtrobicic, AVeenhof, RInduced signals in particle detectors with resistive elements: Numerically modeling novel structures (VCI 2022)Detectors and Experimental TechniquesFor detectors with resistive elements, the time dependence of the signals is not solely given by the movement of the charges in the drift medium but also by the time-dependent reaction of the resistive materials. In this report, we present a numerical way to capture this contribution by using the extended form of the Ramo–Shockley theorem for conductive media. As an example, the methodology will be applied to the MicroCAT two-dimensional interpolation readout to calculate the center of gravity position reconstruction distortion map of its readout cells.oai:cds.cern.ch:28358692022
spellingShingle Detectors and Experimental Techniques
Janssens, D
Brunbauer, F
D'Hondt, J
Floethner, K J
Lisowska, M
Muller, H
Oliveri, E
Orlandini, G
Riegler, W
Ropelewski, L
Schindler, H
Scharenberg, L
Utrobicic, A
Veenhof, R
Induced signals in particle detectors with resistive elements: Numerically modeling novel structures (VCI 2022)
title Induced signals in particle detectors with resistive elements: Numerically modeling novel structures (VCI 2022)
title_full Induced signals in particle detectors with resistive elements: Numerically modeling novel structures (VCI 2022)
title_fullStr Induced signals in particle detectors with resistive elements: Numerically modeling novel structures (VCI 2022)
title_full_unstemmed Induced signals in particle detectors with resistive elements: Numerically modeling novel structures (VCI 2022)
title_short Induced signals in particle detectors with resistive elements: Numerically modeling novel structures (VCI 2022)
title_sort induced signals in particle detectors with resistive elements: numerically modeling novel structures (vci 2022)
topic Detectors and Experimental Techniques
url https://dx.doi.org/10.1016/j.nima.2022.167227
http://cds.cern.ch/record/2835869
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