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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

The PANDA experiment at the FAIR facility adresses open questions in hadron physics with antiproton beams in the momentum range of 1.5-15 GeV/c. The antiprotons are stored and cooled in a High Energy Storage RING (HESR) with a momentum…

The PANDA detector at the international accelerator Facility for Antiproton and Ion Research in Europe (FAIR) addresses fundamental questions of hadron physics. An excellent hadronic particle identification (PID) will be accomplished by two…

The PANDA experiment at the future Facility for Antiproton and Ion Reasearch (FAIR) will address fundamental questions of hadron physics with unprecedented precision. To reach this goal excellent Particle Identification (PID) is essential…

Instrumentation and Detectors · Physics 2019-01-15 J. Schwiening

The PANDA experiment at the international accelerator Facility for Antiproton and Ion Research in Europe (FAIR) near GSI, Darmstadt, Germany will address fundamental questions of hadron physics. Excellent Particle Identification (PID) over…

Instrumentation and Detectors · Physics 2018-03-29 J. Schwiening

The PANDA experiment at the international accelerator Facility for Antiproton and Ion Research in Europe (FAIR), Darmstadt, Germany, will address fundamental questions of hadron physics using $\bar{p}p$ annihilations. Excellent Particle…

The DIRC technology (Detection of Internally Reflected Cherenkov light) offers an excellent possibility to minimize the form factor of Cherenkov detectors in hermetic high energy detectors. The PANDA experiment at FAIR in Germany will…

The PANDA experiment is one of the four large experiments being built at FAIR in Darmstadt. It will use a cooled antiproton beam on a fixed target within the momentum range of 1.5 to 15 GeV/c to address questions of strong QCD, where the…

The Barrel DIRC counter will serve as the primary particle identification detector in the PANDA experiment, enabling high-precision hadron physics studies through antiproton-proton annihilations across a momentum range of 1.5 GeV/c to 15…

This documents describes the technical design and the expected performance of the Barrel DIRC detector for the PANDA experiment. The Barrel DIRC will provide hadronic charged particle identification in the polar angle range of $22^\circ$ to…

Instrumentation and Detectors · Physics 2017-10-03 PANDA Collaboration

The innovative Barrel DIRC (Detection of Internally Reflected Cherenkov light) counter will provide hadronic particle identification (PID) in the central region of the PANDA experiment at the new Facility for Antiproton and Ion Research…

The PANDA experiment will use cooled antiproton beams with high intensity stored1 in the High Energy Storage Ring at FAIR. Reactions on a fixed target producing charmed hadrons will shed light on the strong QCD. Three ring imaging Cherenkov…

The Electron-ion collider in China (EicC) is a proposed future electron-ion collider designed to achieve a high luminosity, with a center-of-mass energy ranging from 15 to 20 GeV. Excellent particle identification (PID) with extensive…

Instrumentation and Detectors · Physics 2026-05-25 Xin Li , Yuxiang Zhao , Yutie Liang , Xu Sun

The Barrel DIRC of the PANDA experiment at FAIR will cleanly separate pions from kaons for the physics program of PANDA. Innovative solutions for key components of the detector sitting in the strong magnetic field of the compact PANDA…

The physics program of the future FAIR facility covers a wide range of topics that address central issues of strong interactions and QCD. The antiproton beam of unprecedented quality in the momentum range from 1 GeV/c to 15 GeV/c will allow…

High Energy Physics - Experiment · Physics 2011-06-15 Diego Bettoni

Physics with antiprotons in the charmonium mass region will play a major role at the future PANDA experiment at the FAIR facility in Darmstadt. At PANDA, an antiproton beam with momenta up to 15 GeV/c circulating in the high-energy storage…

Instrumentation and Detectors · Physics 2013-12-18 Kai-Thomas Brinkmann

Excellent particle identification (PID) will be essential for the PANDA experiment at FAIR. The Barrel DIRC will separate kaons and pions with at least 3 s.d. for momenta up to 3.5 GeV/c and polar angles between 22 and 140 deg. After…

The PANDA detector is under design to be installed at the HESR storage ring for antiproton of the future FAIR facility in Darmstadt, Germany. Fundamental questions of hadron and nuclear physics interactions of antiprotons with nucleons and…

Instrumentation and Detectors · Physics 2008-10-16 S. Marcello

In the PANDA experiment at the FAIR facility at GSI two DIRC (Detection of Internally Reflected Cherenkov light) detectors will be used for $\pi$/K separation up to 4 GeV/c. Due to their location in a high magnetic field and other stringent…

Exciting new scientific opportunities are presented for the PANDA detector at the High Energy Storage Ring in the redefined $\bar{\text{p}} \text{p}(A)$ collider mode, HESR-C, at the Facility for Antiproton and Ion Research (FAIR) in…

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