R&D on a new type of micropattern gaseous detector: The Fast Timing Micropattern detector

D. Abbaneo,M. Abbas,M. Abbrescia,M. Abi Akl, O. Aboamer,D. Acosta,A. Ahmad,W. Ahmed, A. Aleksandrov, P. Altieri,C. Asawatangtrakuldee,P. Aspell,Y. Assran,I. Awan,S. Bally, Y. Ban, S. Banerjee, V. Barashko,P. Barria, G. Bencze, N. Beni,L. Benussi,V. Bhopatkar, S. Bianco,Jelte E. Bos,O. Bouhali, A. Braghieri,S. Braibant,S. Buontempo, C. Calabria,M. Caponero,C. Caputo, F. Cassese,A. Castaneda,S. Cauwenbergh, F.R. Cavallo,A. Celik,M. Choi,S. Choi,J. Christiansen,A. Cimmino,S. Colafranceschi,Anna Colaleo,A. Conde Garcia, S. Czellar,M. M. Dabrowski,G. De Lentdecker,R. De Oliveira,G. De Robertis, S. Dildick, B. Dorney, G. Endroczi,F. Errico,Francesco Fallavollita, A. Fenyvesi,S. Ferry, I. Furic,P. Giacomelli,J. Gilmore,V. Golovtsov, L. Guiducci,F. Guilloux,A. Gutierrez, R.M. Hadjiiska,J. Hauser, K. Hoepfner, M. Hohlmann,H. Hoorani, P. Iaydjiev,Y. G. Jeng, T. Kamon,P. Karchin,A. Korytov,S. Krutelyov,A. Kumar,H. Kim,J. Lee,Thomas Lenzi,L. Litov,F. Loddo,A. Madorsky, T. Maerschalk, M. Maggi,A. Magnani, P.K. Mal,K. Mandal, A. Marchioro, A. Marinov,N. Majumdar, J.A. Merlin,G. Mitselmakher,A.K. Mohanty, A. Mohapatra,J. Molnar, S. Muhammad,S. Mukhopadhyay,M. Naimuddin, S. Nuzzo,E. Oliveri,L.M. Pant,Pierluigi Paolucci, I. C. Park, G. Passeggio,B. Pavlov, B. Philipps, D. Piccolo, H. Postema, A. Puig Baranac,A. Radi,R. Radogna, G. Raffone, A. Ranieri, G. Rashevski, Martina Ressegotti,C. Riccardi, M. Rodozov,A. Rodrigues,L. Ropelewski,S. RoyChowdhury,G. Ryu, M.S. Ryu,A. Safonov,S. Salva, G. Saviano,Archana Sharma,R. Sharma,A.H. Shah,M. Shopova, J. Sturdy, G. Sultanov,S.K. Swain,Z. Szillasi, J. Talvitie, A. Tatarinov,Tuure Tuuva,M. Tytgat,I. Vai,M. Van Stenis,R. Venditti,E. Verhagen,P. Verwilligen, P. Vitulo,S. Volkov, A. Vorobyev,D. Wang,M. Wang,U. Yang,Y. Yang,R. Yonamine, N. Zaganidis,F. Zenoni,A. Zhang

Nuclear Instruments and Methods in Physics Research Section A: Accelerators, Spectrometers, Detectors and Associated Equipment(2017)

引用 8|浏览33
暂无评分
摘要
This contribution introduces a new type of Micropattern Gaseous Detector, the Fast Timing Micropattern (FTM) detector, utilizing fully Resistive WELL structures. The structure of the prototype will be described in detail and the results of the characterization study performed with an X-ray gun will be presented, together with the first results on time resolution based on data collected with muon/pion test beams.
更多
查看译文
关键词
Micropattern gaseous detectors,RWELL,Time resolution,CMS
AI 理解论文
溯源树
样例
生成溯源树,研究论文发展脉络
Chat Paper
正在生成论文摘要