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Small angle detectors for study diffractive processes with CMS
The approach and detectors for diffractive physics based on two current projects—Forward Shower Counter (FSC) and Proton Precision Spectrometer (PPS) are presented. FSC system consists of six (3+3) Stations of scintillator counters, which surround closely the beam pipes along 59 m < |z| < 140...
Autores principales: | , , , , , , , , , , , , |
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Lenguaje: | eng |
Publicado: |
2014
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Materias: | |
Acceso en línea: | https://dx.doi.org/10.1088/1748-0221/9/10/C10032 http://cds.cern.ch/record/2025825 |
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author | Albrow, M Bell, A J d'Enterria, D Hall-Wilton, R Los, S Mokhov, N Murray, M Penzo, A Popescu, S Ronzhin, A Samoylenko, V D Sobol, A Veres, G |
author_facet | Albrow, M Bell, A J d'Enterria, D Hall-Wilton, R Los, S Mokhov, N Murray, M Penzo, A Popescu, S Ronzhin, A Samoylenko, V D Sobol, A Veres, G |
author_sort | Albrow, M |
collection | CERN |
description | The approach and detectors for diffractive physics based on two current projects—Forward Shower Counter (FSC) and Proton Precision Spectrometer (PPS) are presented. FSC system consists of six (3+3) Stations of scintillator counters, which surround closely the beam pipes along 59 m < |z| < 140 m from IP5 on both plus (+) and minus (-) sides. These will detect showers from very forward particles with rapidity 7.5 < |η| < 10 interacting in the beam pipe and surrounding material. FSC allow measurements of single diffraction: p+p → p+G+X (where G is rapidity gap) for lower masses and double diffraction p+p → X+G+X with a large central rapidity gap. The counters can also be used for beam real-time monitoring and will make an invaluable contribution to the understanding of the background environment and its topology. PPS is designed for study the central exclusive production pp → p+X+p, where the + signs denote the absence of hadronic activity (that is, the presence of a rapidity gap) between the outgoing protons and the decay products of the central system X. The precise measurement of the kinematical parameters of the outgoing protons enables to study the properties of the central state X. In PPS part we consider the detector for high precision timing of these protons—QUARTIC. It consists of L-shape bars with quartz or sapphire radiator. The time resolution of the QUARTIC prototypes achieved ≈ 10 ps. |
id | oai-inspirehep.net-1323541 |
institution | Organización Europea para la Investigación Nuclear |
language | eng |
publishDate | 2014 |
record_format | invenio |
spelling | oai-inspirehep.net-13235412019-09-30T06:29:59Zdoi:10.1088/1748-0221/9/10/C10032http://cds.cern.ch/record/2025825engAlbrow, MBell, A Jd'Enterria, DHall-Wilton, RLos, SMokhov, NMurray, MPenzo, APopescu, SRonzhin, ASamoylenko, V DSobol, AVeres, GSmall angle detectors for study diffractive processes with CMSDetectors and Experimental TechniquesThe approach and detectors for diffractive physics based on two current projects—Forward Shower Counter (FSC) and Proton Precision Spectrometer (PPS) are presented. FSC system consists of six (3+3) Stations of scintillator counters, which surround closely the beam pipes along 59 m < |z| < 140 m from IP5 on both plus (+) and minus (-) sides. These will detect showers from very forward particles with rapidity 7.5 < |η| < 10 interacting in the beam pipe and surrounding material. FSC allow measurements of single diffraction: p+p → p+G+X (where G is rapidity gap) for lower masses and double diffraction p+p → X+G+X with a large central rapidity gap. The counters can also be used for beam real-time monitoring and will make an invaluable contribution to the understanding of the background environment and its topology. PPS is designed for study the central exclusive production pp → p+X+p, where the + signs denote the absence of hadronic activity (that is, the presence of a rapidity gap) between the outgoing protons and the decay products of the central system X. The precise measurement of the kinematical parameters of the outgoing protons enables to study the properties of the central state X. In PPS part we consider the detector for high precision timing of these protons—QUARTIC. It consists of L-shape bars with quartz or sapphire radiator. The time resolution of the QUARTIC prototypes achieved ≈ 10 ps.FERMILAB-CONF-14-510-CMS-Eoai:inspirehep.net:13235412014 |
spellingShingle | Detectors and Experimental Techniques Albrow, M Bell, A J d'Enterria, D Hall-Wilton, R Los, S Mokhov, N Murray, M Penzo, A Popescu, S Ronzhin, A Samoylenko, V D Sobol, A Veres, G Small angle detectors for study diffractive processes with CMS |
title | Small angle detectors for study diffractive processes with CMS |
title_full | Small angle detectors for study diffractive processes with CMS |
title_fullStr | Small angle detectors for study diffractive processes with CMS |
title_full_unstemmed | Small angle detectors for study diffractive processes with CMS |
title_short | Small angle detectors for study diffractive processes with CMS |
title_sort | small angle detectors for study diffractive processes with cms |
topic | Detectors and Experimental Techniques |
url | https://dx.doi.org/10.1088/1748-0221/9/10/C10032 http://cds.cern.ch/record/2025825 |
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