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Studies on fast triggering and high precision tracking with Resistive Plate Chambers

We report on studies of fast triggering and high-precision tracking using Resistive Plate Chambers (RPCs). Two beam tests were carried out with the 180 GeV muon beam at CERN using RPCs with gas gaps of 1.00 or 1.15 mm and equipped with readout strips with 1.27 mm pitch. This is the first beam test o...

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Detalles Bibliográficos
Autores principales: Aielli, G., Ball, R., Bilki, B., Chapman, J.W., Cardarelli, R., Dai, T., Diehl, E., Dubbert, J., Ferretti, C., Feng, H., Francis, K., Guan, L., Han, L., Hou, S., Levin, D., Li, B., Liu, L., Paolozzi, L., Repond, J., Roloff, J., Santonico, R., Song, H.Y., Wang, X.L., Wu, Y., Xia, L., Xu, L., Zhao, T., Zhao, Z., Zhou, B., Zhu, J.
Lenguaje:eng
Publicado: 2012
Materias:
Acceso en línea:https://dx.doi.org/10.1016/j.nima.2013.02.044
http://cds.cern.ch/record/1490184
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author Aielli, G.
Ball, R.
Bilki, B.
Chapman, J.W.
Cardarelli, R.
Dai, T.
Diehl, E.
Dubbert, J.
Ferretti, C.
Feng, H.
Francis, K.
Guan, L.
Han, L.
Hou, S.
Levin, D.
Li, B.
Liu, L.
Paolozzi, L.
Repond, J.
Roloff, J.
Santonico, R.
Song, H.Y.
Wang, X.L.
Wu, Y.
Xia, L.
Xu, L.
Zhao, T.
Zhao, Z.
Zhou, B.
Zhu, J.
author_facet Aielli, G.
Ball, R.
Bilki, B.
Chapman, J.W.
Cardarelli, R.
Dai, T.
Diehl, E.
Dubbert, J.
Ferretti, C.
Feng, H.
Francis, K.
Guan, L.
Han, L.
Hou, S.
Levin, D.
Li, B.
Liu, L.
Paolozzi, L.
Repond, J.
Roloff, J.
Santonico, R.
Song, H.Y.
Wang, X.L.
Wu, Y.
Xia, L.
Xu, L.
Zhao, T.
Zhao, Z.
Zhou, B.
Zhu, J.
author_sort Aielli, G.
collection CERN
description We report on studies of fast triggering and high-precision tracking using Resistive Plate Chambers (RPCs). Two beam tests were carried out with the 180 GeV muon beam at CERN using RPCs with gas gaps of 1.00 or 1.15 mm and equipped with readout strips with 1.27 mm pitch. This is the first beam test of RPCs with fine-pitch readout strips that explores simultaneously precision tracking and triggering capabilities. RPC signals were acquired with precision timing and charge integrating readout electronics at both ends of the strips. The time resolution was measured to be better than 600 ps and the average spatial resolution was found to be 220 um using charge information and 287 um using timing information. The dual-ended readout allows the determination of the average and the difference of the signal arrival times. The average time was found to be independent of the incident particle position along the strip and is useful for triggering purposes. The time difference yielded a determination of the hit position with a precision of 7.5 mm along the strip. These results demonstrate the feasibility using RPCs for fast and high-resolution triggering and tracking.
id cern-1490184
institution Organización Europea para la Investigación Nuclear
language eng
publishDate 2012
record_format invenio
spelling cern-14901842021-05-03T20:15:08Zdoi:10.1016/j.nima.2013.02.044http://cds.cern.ch/record/1490184engAielli, G.Ball, R.Bilki, B.Chapman, J.W.Cardarelli, R.Dai, T.Diehl, E.Dubbert, J.Ferretti, C.Feng, H.Francis, K.Guan, L.Han, L.Hou, S.Levin, D.Li, B.Liu, L.Paolozzi, L.Repond, J.Roloff, J.Santonico, R.Song, H.Y.Wang, X.L.Wu, Y.Xia, L.Xu, L.Zhao, T.Zhao, Z.Zhou, B.Zhu, J.Studies on fast triggering and high precision tracking with Resistive Plate ChambersDetectors and Experimental TechniquesWe report on studies of fast triggering and high-precision tracking using Resistive Plate Chambers (RPCs). Two beam tests were carried out with the 180 GeV muon beam at CERN using RPCs with gas gaps of 1.00 or 1.15 mm and equipped with readout strips with 1.27 mm pitch. This is the first beam test of RPCs with fine-pitch readout strips that explores simultaneously precision tracking and triggering capabilities. RPC signals were acquired with precision timing and charge integrating readout electronics at both ends of the strips. The time resolution was measured to be better than 600 ps and the average spatial resolution was found to be 220 um using charge information and 287 um using timing information. The dual-ended readout allows the determination of the average and the difference of the signal arrival times. The average time was found to be independent of the incident particle position along the strip and is useful for triggering purposes. The time difference yielded a determination of the hit position with a precision of 7.5 mm along the strip. These results demonstrate the feasibility using RPCs for fast and high-resolution triggering and tracking.We report on studies of fast triggering and high precision tracking using Resistive Plate Chambers (RPCs). Two beam tests were carried out with the 180GeV/c muon beam at CERN using glass RPCs with gas gaps of 1.15mm and equipped with readout strips with 1.27mm pitch. This is the first beam test of RPCs with fine-pitch readout strips that explores precision tracking and triggering capabilities. RPC signals were acquired with precision timing and charge integrating readout electronics at both ends of the strips. The time resolution was measured to be better than 600ps and the average spatial resolution was found to be 220@mm using charge information and 287@mm only using signal arrival time information. The dual-ended readout allows the determination of the average and the difference of the signal arrival times. The average time was found to be independent of the incident particle position along the strip and is useful for triggering purposes. The time difference yielded a determination of the hit position with a precision of 7.5mm along the strip. These results demonstrate the feasibility using RPCs for fast and high-resolution triggering and tracking.We report on studies of fast triggering and high-precision tracking using Resistive Plate Chambers (RPCs). Two beam tests were carried out with the 180 GeV muon beam at CERN using RPCs with gas gaps of 1.00 or 1.15 mm and equipped with readout strips with 1.27 mm pitch. This is the first beam test of RPCs with fine-pitch readout strips that explores simultaneously precision tracking and triggering capabilities. RPC signals were acquired with precision timing and charge integrating readout electronics at both ends of the strips. The time resolution was measured to be better than 600 ps and the average spatial resolution was found to be 220 um using charge information and 287 um using timing information. The dual-ended readout allows the determination of the average and the difference of the signal arrival times. The average time was found to be independent of the incident particle position along the strip and is useful for triggering purposes. The time difference yielded a determination of the hit position with a precision of 7.5 mm along the strip. These results demonstrate the feasibility using RPCs for fast and high-resolution triggering and tracking.arXiv:1210.6696oai:cds.cern.ch:14901842012-10-26
spellingShingle Detectors and Experimental Techniques
Aielli, G.
Ball, R.
Bilki, B.
Chapman, J.W.
Cardarelli, R.
Dai, T.
Diehl, E.
Dubbert, J.
Ferretti, C.
Feng, H.
Francis, K.
Guan, L.
Han, L.
Hou, S.
Levin, D.
Li, B.
Liu, L.
Paolozzi, L.
Repond, J.
Roloff, J.
Santonico, R.
Song, H.Y.
Wang, X.L.
Wu, Y.
Xia, L.
Xu, L.
Zhao, T.
Zhao, Z.
Zhou, B.
Zhu, J.
Studies on fast triggering and high precision tracking with Resistive Plate Chambers
title Studies on fast triggering and high precision tracking with Resistive Plate Chambers
title_full Studies on fast triggering and high precision tracking with Resistive Plate Chambers
title_fullStr Studies on fast triggering and high precision tracking with Resistive Plate Chambers
title_full_unstemmed Studies on fast triggering and high precision tracking with Resistive Plate Chambers
title_short Studies on fast triggering and high precision tracking with Resistive Plate Chambers
title_sort studies on fast triggering and high precision tracking with resistive plate chambers
topic Detectors and Experimental Techniques
url https://dx.doi.org/10.1016/j.nima.2013.02.044
http://cds.cern.ch/record/1490184
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