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The Micro Vertex Detector (MVD) of the future Compressed Baryonic Matter (CBM) experiment at FAIR will have to provide a spatial precision of $\sim 5~\rm \mu m$ in combination with a material budget of 0.3\% - 0.5\% X$_0$ for a full…

The CBM experiment will investigate heavy-ion collisions at beam energies from 8 to 45 AGeV at the future accelerator facility FAIR. The goal of the experiment is to study the QCD phase diagram in the region of moderate temperatures and…

Nuclear Experiment · Physics 2010-02-17 M. Deveaux , S. Amar-Youcef , C. Dritsa , I. Froehlich , C. Muentz , S. Seddiki , J. Stroth , T. Tischler , C. Trageser

The Compressed Baryonic Matter Experiment (CBM) is one of the core experiments of the future FAIR facility (Darmstadt/Germany). The fixed-target experiment will explore the phase diagram of strongly interacting matter in the regime of high…

The Compressed Baryonic Matter (CBM) experiment is a next-generation heavy-ion experiment under development at the future FAIR facility in Darmstadt, Germany. It is designed to explore the QCD phase diagram at high net-baryon densities with…

Instrumentation and Detectors · Physics 2025-06-26 Maksym Teklishyn

This document illustrates the technical layout and the expected performance of the Micro Vertex Detector (MVD) of the PANDA experiment. The MVD will detect charged particles as close as possible to the interaction zone. Design criteria and…

Instrumentation and Detectors · Physics 2012-08-13 PANDA Collaboration , W. Erni , I. Keshelashvili , B. Krusche , M. Steinacher , Y. Heng , Z. Liu , H. Liu , X. Shen , Q. Wang , H. Xu , M. Albrecht , J. Becker , K. Eickel , F. Feldbauer , M. Fink , P. Friedel , F. H. Heinsius , T. Held , H. Koch , B. Kopf , M. Leyhe , C. Motzko , M. Pelizäus , J. Pychy , B. Roth , T. Schröder , J. Schulze , M. Steinke , T. Trifterer , U. Wiedner , J. Zhong , R. Beck , M. Becker , S. Bianco , K. -Th. Brinkmann , C. Hammann , F. Hinterberger , R. Jäkel , D. Kaiser , R. Kliemt , K. Koop , C. Schmidt , R. Schnell , U. Thoma , P. Vlasov , C. Wendel , A. Winnebeck , Th. Würschig , H. -G. Zaunick , A. Bianconi , M. Bragadireanu , M. Caprini , M. Ciubancan , D. Pantea , P. -D Tarta , M. De Napoli , F. Giacoppo , E. Rapisarda , C. Sfienti , T. Fiutowski , N. Idzik , B. Mindur , D. Przyborowski , K. Swientek , E. Bialkowski , A. Budzanowski , B. Czech , S. Kliczewski , A. Kozela , P. Kulessa , P. Lebiedowicz , K. Malgorzata , K. Pysz , W. Schäfer , R. Siudak , A. Szczurek , P. Brandys , T. Czyzewski , W. Czyzycki , M. Domagala , M. Hawryluk , G. Filo , D. Kwiatkowski , E. Lisowski , F. Lisowski , W. Bardan , D. Gil , B. Kamys , St. Kistryn , K. Korcyl , W. Krzemieñ , A. Magiera , P. Moskal , Z. Rudy , P. Salabura , J. Smyrski , A. Wroñska , M. Al-Turany , R. Arora , I. Augustin , H. Deppe , D. Dutta , H. Flemming , K. Götzen , G. Hohler , R. Karabowicz , D. Lehmann , B. Lewandowski , J. Lühning , F. Maas , H. Orth , K. Peters , T. Saito , G. Schepers , C. J. Schmidt , L. Schmitt , C. Schwarz , J. Schwiening , B. Voss , P. Wieczorek , A. Wilms , V. M. Abazov , G. D. Alexeev , V. A. Arefiev , V. I. Astakhov , M. Yu. Barabanov , B. V. Batyunya , Yu. I. Davydov , V. Kh. Dodokhov , A. A. Efremov , A. G. Fedunov , A. A. Feshchenko , A. S. Galoyan , S. Grigoryan , A. Karmokov , E. K. Koshurnikov , V. I. Lobanov , Yu. Yu. Lobanov , A. F. Makarov , L. V. Malinina , V. L. Malyshev , G. A. Mustafaev , A. G. Olshevski , M. A. Pasyuk , E. A. Perevalova , A. A. Piskun , T. A. Pocheptsov , G. Pontecorvo , V. K. Rodionov , Yu. N. Rogov , R. A. Salmin , A. G. Samartsev , M. G. Sapozhnikov , G. S. Shabratova , A. N. Skachkova , N. B. Skachkov , E. A. Strokovsky , M. K. Suleimanov , R. Sh. Teshev , V. V. Tokmenin , V. V. Uzhinsky , A. S. Vodopyanov , S. A. Zaporozhets , N. I. Zhuravlev , A. G. Zorin , D. Branford , D. Glazier , D. Watts , P. Woods , A. Britting , W. Eyrich , A. Lehmann , F. Uhlig , S. Dobbs , Z. Metreveli , K. Seth , B. Tann , A. Tomaradze , D. Bettoni , V. Carassiti , P. Dalpiaz , A. Drago , E. Fioravanti , I. Garzia , M. Negrini , M. Savriè , G. Stancari , B. Dulach , P. Gianotti , C. Guaraldo , V. Lucherini , E. Pace , A. Bersani , M. Macri , M. Marinelli , R. F. Parodi , V. Dormenev , P. Drexler , M. Düren , T. Eisner , K. Foehl , A. Hayrapetyan , P. Koch , B. Krïoch , W. Kühn , S. Lange , Y. Liang , M. Liu , O. Merle , V. Metag , M. Moritz , M. Nanova , R. Novotny , B. Spruck , H. Stenzel , C. Strackbein , M. Thiel , Q. Wang , T. Clarkson , C. Euan , G. Hill , M. Hoek , D. Ireland , R. Kaiser , T. Keri , I. Lehmann , K. Livingston , P. Lumsden , D. MacGregor , B. McKinnon , R. Montgomery , M. Murray , D. Protopopescu , G. Rosner , B. Seitz , G. Yang , M. Babai , A. K. Biegun , A. Glazenborg-Kluttig , E. Guliyev , V. S. Jothi , M. Kavatsyuk , P. Lemmens , H. Löhner , J. Messchendorp , T. Poelman , H. Smit , J. C. van der Weele , H. Sohlbach , M. Büscher , R. Dosdall , R. Dzhygadlo , S. Esch , A. Gillitzer , F. Goldenbaum , D. Grunwald , V. Jha , G. Kemmerling , H. Kleines , A. Lehrach , R. Maier , M. Mertens , H. Ohm , D. L. Pohl , D. Prasuhn , T. Randriamalala , J. Ritman , M. Roeder , G. Sterzenbach , T. Stockmanns , P. Wintz , P. Wüstner , H. Xu , J. Kisiel , S. Li , Z. Li , Z. Sun , H. Xu , K. Fissum , K. Hansen , L. Isaksson , M. Lundin , B. Schröder , P. Achenbach , A. Denig , M. Distler , M. Fritsch , D. Kangh , A. Karavdina , W. Lauth , M. Michel , M. C. Mora Espi , J. Pochodzalla , S. Sanchez , A. Sanchez-Lorente , C. Sfienti , T. Weber , V. I. Dormenev , A. A. Fedorov , M. V. Korzhik , O. V. Missevitch , V. Balanutsa , V. Chernetsky , A. Demekhin , A. Dolgolenko , P. Fedorets , A. Gerasimov , V. Goryachev , A. Boukharov , O. Malyshev , I. Marishev , A. Semenov , R. Varma , B. Ketzer , I. Konorov , A. Mann , S. Neubert , S. Paul , M. Vandenbroucke , Q. Zhang , A. Khoukaz , T. Rausmann , A. Täschner , J. Wessels , E. Baldin , K. Kotov , S. Peleganchuk , Yu. Tikhonov , T. Hennino , M. Imre , R. Kunne , C. Le Galliard , J. P. Le Normand , D. Marchand , A. Maroni , S. Ong , J. Pouthas , B. Ramstein , P. Rosier , M. Sudol , C. Theneau , E. Tomasi-Gustafsson , J. Van de Wiele , T. Zerguerras , G. Boca , A. Braghieri , S. Costanza , A. Fontana , P. Genova , L. Lavezzi , P. Montagna , A. Rotondi , V. Buda , V. V. Abramov , A. M. Davidenko , A. A. Derevschikov , Y. M. Goncharenko , V. N. Grishin , V. A. Kachanov , D. A. Konstantinov , V. A. Kormilitsin , Y. A. Matulenko , Y. M. Melnik , A. P. Meschanin , N. G. Minaev , V. V. Mochalov , D. A. Morozov , L. V. Nogach , S. B. Nurushev , A. V. Ryazantsev , P. A. Semenov , L. F. Soloviev , A. V. Uzunian , A. N. Vasiliev , A. E. Yakutin , S. Belostotski , G. Gavrilov , A. Itzotov , A. Kisselev , P. Kravchenko , S. Manaenkov , O. Miklukho , Y. Naryshkin , D. Veretennikov , V. Vikhrov , A. Zhadanov , T. Bäck , B. Cederwall , C. Bargholtz , L. Gerén , P. E. Tegnér , P. Thørngren , K. M. von Würtemberg , L. Fava , D. Alberto , A. Amoroso , M. P. Bussa , L. Busso , F. De Mori , M. Destefanis , L. Ferrero , M. Greco , T. Kugathasan , M. Maggiora , S. Marcello , S. Sosio , S. Spataro , D. Calvo , S. Coli , P. De Remigis , A. Filippi , G. Giraudo , S. Lusso , G. Mazza , M. Mignone , A. Rivetti , R. Wheadon , L. Zotti , O. Morra , F. Iazzi , A. Lavagno , P. Quarati , K. Szymanska , R. Birsa , F. Bradamante , A. Bressan , A. Martin , H. Clement , B. Galnander , H. Calén , K. Fransson , T. Johansson , A. Kupsc , P. Marciniewski , E. Thomé , M. Wolke , J. Zlomanczuk , J. Díaz , A. Ortiz , P. Buda , K. Dmowski , R. Korzeniewski , D. Przemyslaw , B. Slowinski , S. Borsuk , A. Chlopik , Z. Guzik , J. Kopec , T. Kozlowski , D. Melnychuk , M. Plominski , J. Szewinski , K. Traczyk , B. Zwieglinski , P. Bühler , A. Gruber , P. Kienle , J. Marton , E. Widmann , J. Zmeskal

The mission of the Compressed Baryonic Matter (CBM) experiment at the future Facility for Antiproton and Ion Research (FAIR) in Darmstadt is to explore the QCD phase diagram at high net baryon densities likely to exist in the core of…

Nuclear Experiment · Physics 2020-06-24 Anna Senger

The compressed baryonic matter (CBM) experiment at the future FAIR accelerator facility near Darmstadt, Germany, aims at the investigation of baryonic matter at highest net baryon densities but moderate temperatures, by colliding heavy-ions…

Nuclear Experiment · Physics 2011-12-05 A. Prakash , P. P. Bhaduri , S. Chattopadhyay , A. Dubey , B. K. Singh

The Compressed Baryonic Matter (CBM) experiment at the future Facility for Antiproton and Ion Research (FAIR) is a heavy-ion experiment designed to study nuclear matter at the highest baryonic density. For high-statistics measurements of…

Instrumentation and Detectors · Physics 2025-05-28 The CBM Collaboration

Lightweight thermal management is central to the design of the all-silicon Inner Tracker of the Compressed Baryonic Matter Experiment (CBM) at the Facility for Antiproton and Ion Research (FAIR). This experiment aims to study strongly…

Instrumentation and Detectors · Physics 2025-02-24 Franz Matejcek , Kshitij Agarwal , CBM Collaboration

To assess the viability of a shallow-depth neutrino detector, a Cosmic Muon Veto Detector (CMVD) is being constructed on top of the stack of Resistive Plate Chamber (RPC) detectors at TIFR, Mumbai. The CMVD employs extruded plastic…

Instrumentation and Detectors · Physics 2025-09-05 Prajjalak Chattopadhyay , Mandar N. Saraf , Gobinda Majumder , Satyanarayana Bheesette , Ravindra R. Shinde

The Compressed Baryonic Matter (CBM) spectrometer aims to study strongly interacting matter under extreme conditions. The key element providing hadron identification at incident energies between 2 and 11 AGeV in heavy-ion collisions at the…

Instrumentation and Detectors · Physics 2019-09-04 D Hu , D Sauter , Y Sun , I Deppner , N Herrmann , J Brandt , H Chen , E Lavrik , C Li , M Shao , C Simon , Z Tang , X Wang , Ph Weidenkaff , Y Zhang , J Zhou , H Zeng

The Compressed Baryonic Matter (CBM) experiment will investigate high-energy heavy-ion collisions at the international Facility for Antiproton and Ion Research (FAIR), which is under construction in Darmstadt, Germany. The CBM research…

Instrumentation and Detectors · Physics 2020-05-15 Peter Senger

The India-Based Neutrino Observatory (INO) collaboration houses the miniICAL detector, at the transit campus of IICHEP, Madurai, India, which serves as a prototype-detector of the larger Iron-Calorimeter detector (ICAL). The purpose of…

High Energy Physics - Experiment · Physics 2024-07-17 Raj Shah , Gobinda Majumder

The INO collaboration is designing a cosmic muon veto detector (CMVD) to cover the mini-ICAL detector which is operational at the IICHEP transit campus, Madurai in South India. The aim of the CMVD is to study the feasibility of building an…

The Compressed Baryonic Matter spectrometer (CBM) is a future fixed-target heavy-ion experiment located at the Facility for Anti-proton and Ion Research (FAIR) in Darmstadt, Germany. The key element in CBM providing hadron identification at…

Instrumentation and Detectors · Physics 2020-01-29 I. Deppner , N. Herrmann

Due to high spectral efficiency and power efficiency, the continuous phase modulation (CPM) technique with constant envelope is widely used in aeronautical telemetry in strategic weapons and rockets, which are essential for national defence…

Signal Processing · Electrical Eng. & Systems 2019-06-11 You Zhou , Ruifeng Duan , Bofeng Jiang

The Multipurpose Detector (MPD) \cite{cite1.MPD_CDR} is designed to study of hot and dense baryonic matter in collisions of heavy ions over the atomic mass range 1--197 at the centre of mass energy up to $\sqrt{S_{NN}}$ = 11 GeV (for…

Massive vector particles are minimal dark matter candidates that motivate a wide range of laboratory searches, primarily exploiting a postulated kinetic mixing with the photon. However, depending on the high energy field content, the…

High Energy Physics - Phenomenology · Physics 2023-08-16 Gordan Krnjaic , Tanner Trickle

The future Facility for Anti-proton and Ion Research (FAIR), currently in construction in Darmstadt, Germany, is one of the largest research projects worldwide. The Compressed Baryonic Matter (CBM) experiment is one of the main pillars at…

Instrumentation and Detectors · Physics 2021-02-03 Qiunan Zhang , Ingo Deppner , Nobert Herrmann , Yi Wang
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