Operation of a drift chamber vertex detector at the ISR

ISSN:
0029-554X
Source:
Elsevier Journal Backfiles on ScienceDirect 1907 - 2002
Topics:
Energy, Environment Protection, Nuclear Power Engineering
Physics
Type of Medium:
Electronic Resource
URL:
_version_ 1798291149805322240
autor Cockerill, D.
Fabjan, C.W.
Frandsen, P.
Hallgren, A.
Heck, B.
Hilke, H.J.
Hogue, R.
Killian, T.
Melin, A.
Nilsson, A.
Rudge, A.
Lorstad, B.
Schistad, B.
Nielsen, B.S.
Wang, C.J.
Lissauer, D.
Wang, D.W.
Dahl-Jensen, E.
Rosso, E.
Damgaard, G.
Jarlskog, G.
Von Dardel, G.
Boggild, H.
Dahl-Jensen, I.
Hooper, J.
autorsonst Cockerill, D.
Fabjan, C.W.
Frandsen, P.
Hallgren, A.
Heck, B.
Hilke, H.J.
Hogue, R.
Killian, T.
Melin, A.
Nilsson, A.
Rudge, A.
Lorstad, B.
Schistad, B.
Nielsen, B.S.
Wang, C.J.
Lissauer, D.
Wang, D.W.
Dahl-Jensen, E.
Rosso, E.
Damgaard, G.
Jarlskog, G.
Von Dardel, G.
Boggild, H.
Dahl-Jensen, I.
Hooper, J.
book_url http://linkinghub.elsevier.com/retrieve/pii/0029-554X(80)90696-5
datenlieferant nat_lic_papers
fussnote A cylindrical drift chamber with ''bicycle-wheel'' geometry has been constructed as the central detector for the Axial Field Spectrometer (AFS) at the ISR. To permit particle separation in jet-like event at high events rates, a considerable degree of azimuthal segmentation was chosen together with up to 42 space points per track. These points are obtained from measurements to drift time and charge division. Some particle identification is achieved with ionization loss sampling (dE/dx). This contribution presents details on the construction and the operation of the drift chamber at the ISR and preliminary performance results.
hauptsatz hsatz_simple
identnr NLZ180522965
issn 0029-554X
journal_name Nuclear Instruments and Methods
materialart 1
package_name Elsevier
publikationsort Amsterdam
publisher Elsevier
reference 176 (1980), S. 159-162
search_space articles
shingle_author_1 Cockerill, D.
Fabjan, C.W.
Frandsen, P.
Hallgren, A.
Heck, B.
Hilke, H.J.
Hogue, R.
Killian, T.
Melin, A.
Nilsson, A.
Rudge, A.
Lorstad, B.
Schistad, B.
Nielsen, B.S.
Wang, C.J.
Lissauer, D.
Wang, D.W.
Dahl-Jensen, E.
Rosso, E.
Damgaard, G.
Jarlskog, G.
Von Dardel, G.
Boggild, H.
Dahl-Jensen, I.
Hooper, J.
shingle_author_2 Cockerill, D.
Fabjan, C.W.
Frandsen, P.
Hallgren, A.
Heck, B.
Hilke, H.J.
Hogue, R.
Killian, T.
Melin, A.
Nilsson, A.
Rudge, A.
Lorstad, B.
Schistad, B.
Nielsen, B.S.
Wang, C.J.
Lissauer, D.
Wang, D.W.
Dahl-Jensen, E.
Rosso, E.
Damgaard, G.
Jarlskog, G.
Von Dardel, G.
Boggild, H.
Dahl-Jensen, I.
Hooper, J.
shingle_author_3 Cockerill, D.
Fabjan, C.W.
Frandsen, P.
Hallgren, A.
Heck, B.
Hilke, H.J.
Hogue, R.
Killian, T.
Melin, A.
Nilsson, A.
Rudge, A.
Lorstad, B.
Schistad, B.
Nielsen, B.S.
Wang, C.J.
Lissauer, D.
Wang, D.W.
Dahl-Jensen, E.
Rosso, E.
Damgaard, G.
Jarlskog, G.
Von Dardel, G.
Boggild, H.
Dahl-Jensen, I.
Hooper, J.
shingle_author_4 Cockerill, D.
Fabjan, C.W.
Frandsen, P.
Hallgren, A.
Heck, B.
Hilke, H.J.
Hogue, R.
Killian, T.
Melin, A.
Nilsson, A.
Rudge, A.
Lorstad, B.
Schistad, B.
Nielsen, B.S.
Wang, C.J.
Lissauer, D.
Wang, D.W.
Dahl-Jensen, E.
Rosso, E.
Damgaard, G.
Jarlskog, G.
Von Dardel, G.
Boggild, H.
Dahl-Jensen, I.
Hooper, J.
shingle_catch_all_1 Cockerill, D.
Fabjan, C.W.
Frandsen, P.
Hallgren, A.
Heck, B.
Hilke, H.J.
Hogue, R.
Killian, T.
Melin, A.
Nilsson, A.
Rudge, A.
Lorstad, B.
Schistad, B.
Nielsen, B.S.
Wang, C.J.
Lissauer, D.
Wang, D.W.
Dahl-Jensen, E.
Rosso, E.
Damgaard, G.
Jarlskog, G.
Von Dardel, G.
Boggild, H.
Dahl-Jensen, I.
Hooper, J.
Operation of a drift chamber vertex detector at the ISR
0029-554X
0029554X
Elsevier
shingle_catch_all_2 Cockerill, D.
Fabjan, C.W.
Frandsen, P.
Hallgren, A.
Heck, B.
Hilke, H.J.
Hogue, R.
Killian, T.
Melin, A.
Nilsson, A.
Rudge, A.
Lorstad, B.
Schistad, B.
Nielsen, B.S.
Wang, C.J.
Lissauer, D.
Wang, D.W.
Dahl-Jensen, E.
Rosso, E.
Damgaard, G.
Jarlskog, G.
Von Dardel, G.
Boggild, H.
Dahl-Jensen, I.
Hooper, J.
Operation of a drift chamber vertex detector at the ISR
0029-554X
0029554X
Elsevier
shingle_catch_all_3 Cockerill, D.
Fabjan, C.W.
Frandsen, P.
Hallgren, A.
Heck, B.
Hilke, H.J.
Hogue, R.
Killian, T.
Melin, A.
Nilsson, A.
Rudge, A.
Lorstad, B.
Schistad, B.
Nielsen, B.S.
Wang, C.J.
Lissauer, D.
Wang, D.W.
Dahl-Jensen, E.
Rosso, E.
Damgaard, G.
Jarlskog, G.
Von Dardel, G.
Boggild, H.
Dahl-Jensen, I.
Hooper, J.
Operation of a drift chamber vertex detector at the ISR
0029-554X
0029554X
Elsevier
shingle_catch_all_4 Cockerill, D.
Fabjan, C.W.
Frandsen, P.
Hallgren, A.
Heck, B.
Hilke, H.J.
Hogue, R.
Killian, T.
Melin, A.
Nilsson, A.
Rudge, A.
Lorstad, B.
Schistad, B.
Nielsen, B.S.
Wang, C.J.
Lissauer, D.
Wang, D.W.
Dahl-Jensen, E.
Rosso, E.
Damgaard, G.
Jarlskog, G.
Von Dardel, G.
Boggild, H.
Dahl-Jensen, I.
Hooper, J.
Operation of a drift chamber vertex detector at the ISR
0029-554X
0029554X
Elsevier
shingle_title_1 Operation of a drift chamber vertex detector at the ISR
shingle_title_2 Operation of a drift chamber vertex detector at the ISR
shingle_title_3 Operation of a drift chamber vertex detector at the ISR
shingle_title_4 Operation of a drift chamber vertex detector at the ISR
sigel_instance_filter dkfz
geomar
wilbert
ipn
albert
fhp
source_archive Elsevier Journal Backfiles on ScienceDirect 1907 - 2002
timestamp 2024-05-06T08:28:02.886Z
titel Operation of a drift chamber vertex detector at the ISR
titel_suche Operation of a drift chamber vertex detector at the ISR
A cylindrical drift chamber with ''bicycle-wheel'' geometry has been constructed as the central detector for the Axial Field Spectrometer (AFS) at the ISR. To permit particle separation in jet-like event at high events rates, a considerable degree of azimuthal segmentation was chosen together with up to 42 space points per track. These points are obtained from measurements to drift time and charge division. Some particle identification is achieved with ionization loss sampling (dE/dx). This contribution presents details on the construction and the operation of the drift chamber at the ISR and preliminary performance results.
topic ZP
U
uid nat_lic_papers_NLZ180522965