English
Related papers

Related papers: Initial performance of the GlueX DIRC detector

200 papers

A proximity focusing ring imaging Cherenkov detector, with the radiator consisting of two or more aerogel layers of different refractive indices, has been tested in 1-4 GeV/c pion beams at KEK. Essentially, a multiple refractive index…

The performance of a prototype Ring Imaging Cherenkov Detector is studied using a charged particle beam. The detector performance, using CF4 and air as radiators, is described. Cherenkov angle precision and photoelectron yield using hybrid…

In recent years, the issue of radon emanation and diffusion has become a critical concern for rare decay experiments, such as JUNO and PandaX-4T. This paper introduces a detector design featuring a symmetric radon detector cavity for the…

PANDA (anti-Proton ANnihiliation at DArmstadt) is planned to be one of the four main experiments at the future international accelerator complex FAIR (Facility for Antiproton and Ion Research) in Darmstadt, Germany. It is going to address…

Instrumentation and Detectors · Physics 2020-01-01 Panda Collaboration , F. Davi , W. Erni , B. Krusche , M. Steinacher , N. Walford , H. Liu , Z. Liu , B. Liu , X. Shen , C. Wang , J. Zhao , M. Albrecht , T. Erlen , F. Feldbauer , M. Fink , V. Freudenreich , M. Fritsch , F. H. Heinsius , T. Held , T. Holtmann , I. Keshk , H. Koch , B. Kopf , M. Kuhlmann , M. Kümmel , S. Leiber , P. Musiol , A. Mustafa , M. Pelizäus , A. Pitka , G. Reicherz , M. Richter , C. Schnier , T. Schröder , S. Sersin , L. Sohl , C. Sowa , M. Steinke , T. Triffterer , U. Wiedner , R. Beck , C. Hammann , J. Hartmann , B. Ketzer , M. Kube , M. Rossbach , C. Schmidt , R. Schmitz , U. Thoma , M. Urban , A. Bianconi , M. Bragadireanu , D. Pantea , W. Czyzycki , M. Domagala , G. Filo , J. Jaworowski , M. Krawczyk , E. Lisowski , F. Lisowski , M. Michalek , J. Plazek , K. Korcyl , A. Kozela , P. Kulessa , P. Lebiedowicz , K. Pysz , W. Schäfer , A. Szczurek , T. Fiutowski , M. Idzik , B. Mindur , K. Swientek , J. Biernat , B. Kamys , S. Kistryn , G. Korcyl , W. Krzemien , A. Magiera , P. Moskal , W. Przygoda , Z. Rudy , P. Salabura , J. Smyrski , P. Strzempek , A. Wronska , I. Augustin , R. Böhm , I. Lehmann , D. Nicmorus Marinescu , L. Schmitt , V. Varentsov , M. Al-Turany , A. Belias , H. Deppe , N. Divani Veis , R. Dzhygadlo , H. Flemming , A. Gerhardt , K. Götzen , R. Karabowicz , U. Kurilla , D. Lehmann , S. Löchner , J. Lühning , U. Lynen , S. Nakhoul , H. Orth , K. Peters , T. Saito , G. Schepers , C. J. Schmidt , C. Schwarz , J. Schwiening , A. Täschner , M. Traxler , B. Voss , P. Wieczorek , A. Wilms , V. Abazov , G. Alexeev , V. A. Arefiev , V. Astakhov , M. Yu. Barabanov , B. V. Batyunya , V. Kh. Dodokhov , A. Efremov , A. Fechtchenko , A. Galoyan , G. Golovanov , E. K. Koshurnikov , Y. Yu. Lobanov , V. I. Lobanov , V. Malyshev , A. G. Olshevskiy , A. A. Piskun , A. Samartsev , M. G. Sapozhnikov , N. B. Skachkov , A. N. Skachkova , E. A. Strokovsky , V. Tokmenin , V. Uzhinsky , A. Verkheev , A. Vodopianov , N. I. Zhuravlev , A. Zinchenko , D. Branford , D. Glazier , D. Watts , M. Böhm , W. Eyrich , A. Lehmann , D. Miehling , M. Pfaffinger , S. Stelter , F. Uhlig , S. Dobbs , K. Seth , A. Tomaradze , T. Xiao , D. Bettoni , A. Ali , A. Hamdi , M. Krebs , F. Nerling , V. Akishina , S. Gorbunov , I. Kisel , G. Kozlov , M. Pugach , M. Zyzak , N. Bianchi , P. Gianotti , C. Guaraldo , V. Lucherini , G. Bracco , S. Bodenschatz , K. T. Brinkmann , V. Di Pietro , S. Diehl , V. Dormenev , M. Düren , E. Etzelmüller , K. Föhl , M. Galuska , T. Geßler , E. Gutz , C. Hahn , A. Hayrapetyan , M. Kesselkaul , W. Kühn , T. Kuske , J. S. Lange , Y. Liang , V. Metag , M. Moritz , M. Nanova , R. Novotny , T. Quagli , A. Riccardi , J. Rieke , M. Schmidt , R. Schnell , H. Stenzel , M. Strickert , U. Thöring , T. Wasem , B. Wohlfahrt , H. G. Zaunick , E. Tomasi-Gustafsson , D. Ireland , G. Rosner , B. Seitz , P. N. Deepak , A. Kulkarni , A. Apostolou , M. Babai , M. Kavatsyuk , H. Loehner , J. Messchendorp , P. Schakel , M. Tiemens , J. C. van der Weele , S. Vejdani , K. Dutta , K. Kalita , H. Sohlbach , M. Bai , L. Bianchi , M. Büscher , A. Derichs , R. Dosdall , A. Erven , V. Fracassi , A. Gillitzer , F. Goldenbaum , D. Grunwald , L. Jokhovets , G. Kemmerling , H. Kleines , A. Lai , A. Lehrach , M. Mikirtychyants , S. Orfanitski , D. Prasuhn , E. Prencipe , J. Pütz , J. Ritman , E. Rosenthal , S. Schadmand , T. Sefzick , V. Serdyuk , G. Sterzenbach , T. Stockmanns , P. Wintz , P. Wüstner , H. Xu , Y. Zhou , Z. Li , X. Ma , H. Xu , V. Rigato , L. Isaksson , P. Achenbach , A. Aycock , O. Corell , A. Denig , M. Distler , M. Hoek , W. Lauth , Z. Liu , H. Merkel , U. Müller , J. Pochodzalla , S. Sanchez , S. Schlimme , C. Sfienti , M. Thiel , M. Zambrana , H. Ahmadi , S. Ahmed , S. Bleser , L. Capozza , M. Cardinali , A. Dbeyssi , A. Ehret , B. Fröhlich , P. Grasemann , S. Haasler , D. Izard , J. Jorge , D. Khaneft , R. Klasen , R. Kliemt , J. Köhler , H. H. Leithoff , D. Lin , F. Maas , S. Maldaner , M. Michel , M. C. Mora Espi , C. Morales Morales , C. Motzko , O. Noll , S. Pflüger , D. Rodriguez Pineiro , M. Steinen , E. Walaa , S. Wolff , I. Zimmermann , A. Fedorov , M. Korzhik , O. Missevitch , P. Balanutsa , V. Chernetsky , A. Demekhin , A. Dolgolenko , P. Fedorets , A. Gerasimov , V. Goryachev , D. Y. Kirin , V. A. Matveev , A. V. Stavinskiy , A. Balashoff , A. Boukharov , O. Malyshev , I. Marishev , V. Chandratre , V. Datar , V. Jha , H. Kumawat , A. K. Mohanty , A. Parmar , A. K. Rai , B. Roy , G. Sonika , C. Fritzsch , S. Grieser , A. K. Hergemöller , B. Hetz , N. Hüsken , A. Khoukaz , J. P. Wessels , C. Herold , K. Khosonthongkee , C. Kobdaj , A. Limphirat , P. Srisawad , Y. Yan , A. E. Blinov , S. Kononov , E. A. Kravchenko , E. Antokhin , M. Barnyakov , A. Yu. Barnyakov , K. Beloborodov , V. E. Blinov , V. S. Bobrovnikov , I. A. Kuyanov , A. P. Onuchin , S. Pivovarov , E. Pyata , S. Serednyakov , Y. Tikhonov , R. Kunne , D. Marchand , B. Ramstein , J. van de Wiele , Y. Wang , G. Boca , V. Burian , M. Finger , M. Finger , A. Nikolovova , M. Pesek , M. Peskova , M. Pfeffer , I. Prochazka , M. Slunecka , P. Gallus , V. Jary , J. Novy , M. Tomasek , M. Virius , V. Vrba , V. Abramov , N. Belikov , S. Bukreeva , A. Davidenko , A. Derevschikov , Y. Goncharenko , V. Grishin , V. Kachanov , V. Kormilitsin , A. Levin , Y. Melnik , N. Minaev , V. Mochalov , D. Morozov , L. Nogach , S. Poslavskiy , A. Ryazantsev , S. Ryzhikov , P. Semenov , I. Shein , A. Uzunian , A. Vasiliev , A. Yakutin , U. Roy , B. Yabsley , S. Belostotski , G. Gavrilov , A. Izotov , S. Manaenkov , O. Miklukho , D. Veretennikov , A. Zhdanov , T. Bäck , B. Cederwall , K. Makonyi , M. Preston , P. E. Tegner , D. Wölbing , S. Godre , M. P. Bussa , S. Marcello , S. Spataro , F. Iazzi , R. Introzzi , A. Lavagno , D. Calvo , P. De Remigis , A. Filippi , G. Mazza , A. Rivetti , R. Wheadon , A. Martin , H. Calen , W. Ikegami Andersson , T. Johansson , A. Kupsc , P. Marciniewski , M. Papenbrock , J. Pettersson , J. Regina , K. Schönning , M. Wolke , J. Diaz , V. Pothodi Chackara , A. Chlopik , G. Kesik , D. Melnychuk , B. Slowinski , A. Trzcinski , M. Wojciechowski , S. Wronka , B. Zwieglinski , P. Bühler , J. Marton , D. Steinschaden , K. Suzuki , E. Widmann , S. Zimmermann , J. Zmeskal

Super B factories that will further probe the flavor sector of the Standard Model and physics beyond will demand excellent charged particle identification (PID), particularly K/pi separation, for momenta up to 4 GeV/c, as well as the…

Instrumentation and Detectors · Physics 2014-11-20 K. Nishimura , T. Browder , H. Hoedlmoser , B. Jacobson , J. Kennedy , M. Rosen , L. Ruckman , G. Varner , A. Wong , W. Yen

The LUXE experiment aims at studying high-field QED in electron-laser and photon-laser interactions, with the 16.5 GeV electron beam of the European XFEL and a laser beam with power of up to 350 TW. The experiment will measure the spectra…

High Energy Physics - Experiment · Physics 2022-09-30 Arka Santra

The PICOSEC detector concept uses a micro-pattern gaseous detector (MPGD) amplification structure combined with a Cerenkov radiator coated with a semi-transparent photocathode to provide below tens of picosecond-level precision timing…

Instrumentation and Detectors · Physics 2025-12-12 Kondo Gnanvo

We study the reconstruction and particle identification (PID) problem for Ring Imaging devices providing a good knowledge of the direction of the Cerenkov photons, as the DIRC system, on which we specialize. We advocate first the use of the…

High Energy Physics - Experiment · Physics 2009-10-31 M. Benayoun , L. Del Buono , Ph. Leruste

In this paper we describe the current status of the CALDER project, which is developing ultra-sensitive light detectors based on superconductors for cryogenic applications. When we apply an AC current to a superconductor, the Cooper pairs…

The ALICE Collaboration is proposing a completely new apparatus, ALICE~3, for the LHC Runs~5 and beyond. In this context, a key subsystem for high-energy charged particle identification will be a proximity-focusing ring-imaging Cherenkov…

The CLEO-III Detector upgrade for charged particle identification is discussed. The RICH design uses solid LiF crystal radiators coupled with multi-wire chamber photon detectors, using TEA as the photosensor, and low-noise Viking readout…

This paper presents performance measurements of a new readout electronics system based on silicon photomultipliers for the PHENIX electromagnetic calorimeter. Installation of the lead-scintillator Shashlik style calorimeter into the…

FastDIRC is a novel fast Monte Carlo and reconstruction algorithm for DIRC detectors. A DIRC employs rectangular fused-silica bars both as Cherenkov radiators and as light guides. Cherenkov-photon imaging and time-of-propagation information…

Data Analysis, Statistics and Probability · Physics 2016-11-03 John Hardin , Mike Williams

We report on test results of a novel ring imaging Cherenkov (RICH) detection system consisting of a 3 meter long gaseous C4F8O radiator, a focusing mirror, and a photon detector array based on Hamamatsu multi-anode photomultiplier tubes.…

One of the fundamental goals of the PHENIX experiment is to understand the structure of cold nuclear matter, since this serves as the initial state for heavy-ion collisions. Knowing the initial state is vital for interpreting measurements…

Nuclear Experiment · Physics 2012-10-10 Mickey Chiu

One of the future plans at Jefferson Lab is running electron scattering experiments with large acceptance detectors at luminosities $> 10^{37}cm^{-2}s^{-1}$. These experiments allow the measurements of the Double Deeply Virtual Compton…

We describe the design, construction and performance of a Ring Imaging Cherenkov Detector (RICH) constructed to identify charged particles in the CLEO experiment. Cherenkov radiation occurs in LiF crystals, both planar and ones with a novel…

Providing a background discrimination tool is crucial for enhancing the sensitivity of next-generation experiments searching for neutrinoless double- beta decay. The development of high-sensitivity (< 20 eV RMS) cryogenic light detectors…

The GlueX forward calorimeter is an array of 2800 lead glass modules that was constructed to detect photons produced in the decays of hadrons. A background to this process originates from hadronic interactions in the calorimeter, which, in…

Data Analysis, Statistics and Probability · Physics 2020-05-28 Rebecca Barsotti , Matthew R. Shepherd

The experimental requirements in near future accelerators (e.g. High Luminosity-LHC) has stimulated intense interest in development of detectors with high precision timing capabilities. With this as a goal, a new detection concept called…

‹ Prev 1 3 4 5 6 7 10 Next ›