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Experimental and numerical simulation of a TPC like set up for the measurement of ion backflow

Ion backflow is one of the effects limiting the operation of a gaseous detector at high flux, by giving rise to space charge which perturbs the electric field. The natural ability of bulk Micromegas to suppress ion feedback is very effective and can help the TPC drift volume to remain relatively fre...

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Autores principales: Sankar Bhattacharya, Deb, Bhattacharya, Purba, Rout, Prasant Kumar, Mukhopadhyay, Supratik, Bhattacharya, Sudeb, Majumdar, Nayana, Sarkar, Sandip, Colas, Paul, Attie, David, Ganjour, Serguei, Bhattacharya, Aparajita
Lenguaje:eng
Publicado: 2017
Materias:
Acceso en línea:http://cds.cern.ch/record/2628413
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author Sankar Bhattacharya, Deb
Bhattacharya, Purba
Rout, Prasant Kumar
Mukhopadhyay, Supratik
Bhattacharya, Sudeb
Majumdar, Nayana
Sarkar, Sandip
Colas, Paul
Attie, David
Ganjour, Serguei
Bhattacharya, Aparajita
author_facet Sankar Bhattacharya, Deb
Bhattacharya, Purba
Rout, Prasant Kumar
Mukhopadhyay, Supratik
Bhattacharya, Sudeb
Majumdar, Nayana
Sarkar, Sandip
Colas, Paul
Attie, David
Ganjour, Serguei
Bhattacharya, Aparajita
author_sort Sankar Bhattacharya, Deb
collection CERN
description Ion backflow is one of the effects limiting the operation of a gaseous detector at high flux, by giving rise to space charge which perturbs the electric field. The natural ability of bulk Micromegas to suppress ion feedback is very effective and can help the TPC drift volume to remain relatively free of space charge build-up. An efficient and precise measurement of the backflow fraction is necessary to cope up with the track distortion due to the space charge effect. In a subtle but significant modification of the usual approach, we have made use of two drift meshes in order to measure the ion backflow fraction for bulk Micromegas detector. This helps to truly represent the backflow fraction for a TPC. Moreover, attempt is taken to optimize the field configuration between the drift meshes. In conjunction with the experimental measurement, Garfield simulation framework has been used to simulate the related physics processes numerically.
id cern-2628413
institution Organización Europea para la Investigación Nuclear
language eng
publishDate 2017
record_format invenio
spelling cern-26284132023-02-07T06:43:11Zhttp://cds.cern.ch/record/2628413engSankar Bhattacharya, DebBhattacharya, PurbaRout, Prasant KumarMukhopadhyay, SupratikBhattacharya, SudebMajumdar, NayanaSarkar, SandipColas, PaulAttie, DavidGanjour, SergueiBhattacharya, AparajitaExperimental and numerical simulation of a TPC like set up for the measurement of ion backflowphysics.ins-detDetectors and Experimental TechniquesIon backflow is one of the effects limiting the operation of a gaseous detector at high flux, by giving rise to space charge which perturbs the electric field. The natural ability of bulk Micromegas to suppress ion feedback is very effective and can help the TPC drift volume to remain relatively free of space charge build-up. An efficient and precise measurement of the backflow fraction is necessary to cope up with the track distortion due to the space charge effect. In a subtle but significant modification of the usual approach, we have made use of two drift meshes in order to measure the ion backflow fraction for bulk Micromegas detector. This helps to truly represent the backflow fraction for a TPC. Moreover, attempt is taken to optimize the field configuration between the drift meshes. In conjunction with the experimental measurement, Garfield simulation framework has been used to simulate the related physics processes numerically.arXiv:1710.00624oai:cds.cern.ch:26284132017
spellingShingle physics.ins-det
Detectors and Experimental Techniques
Sankar Bhattacharya, Deb
Bhattacharya, Purba
Rout, Prasant Kumar
Mukhopadhyay, Supratik
Bhattacharya, Sudeb
Majumdar, Nayana
Sarkar, Sandip
Colas, Paul
Attie, David
Ganjour, Serguei
Bhattacharya, Aparajita
Experimental and numerical simulation of a TPC like set up for the measurement of ion backflow
title Experimental and numerical simulation of a TPC like set up for the measurement of ion backflow
title_full Experimental and numerical simulation of a TPC like set up for the measurement of ion backflow
title_fullStr Experimental and numerical simulation of a TPC like set up for the measurement of ion backflow
title_full_unstemmed Experimental and numerical simulation of a TPC like set up for the measurement of ion backflow
title_short Experimental and numerical simulation of a TPC like set up for the measurement of ion backflow
title_sort experimental and numerical simulation of a tpc like set up for the measurement of ion backflow
topic physics.ins-det
Detectors and Experimental Techniques
url http://cds.cern.ch/record/2628413
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