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CALIFA, a Dedicated Calorimeter for the R3B/FAIR

D. Cortina-Gil ; H. Álvarez-Pol ; T. Aumann ; V.V. Avdeichikov ; M. Bendel ; J. Benlliure ; D. Bertini ; A.A. Bezbakh ; T. Bloch ; M. Böhmer ; M.J.G. Borge ; J.A. Briz ; P. Cabanelas ; E. Casarejos ; M. Carmona-Gallardo ; J. Cederkäll ; L.V. Chulkov ; M. Dierigl ; D. Di Julio ; I. Durán ; E. Fiori ; A.S. Fomichev ; D. Galaviz ; M. Gasćon ; R. Gernhäuser ; J. Gerl ; P.I. Golubev ; M.S. Golovkov ; D. González ; A.V. Gorshkov ; Andreas Martin Heinz (Institutionen för fundamental fysik) ; M. Heil ; W. Henning ; G. Ickert ; A.S. Ignatov ; B. Jakobsson ; Håkan T. Johansson (Institutionen för fundamental fysik) ; T. Kröll ; R. Krücken ; S.A. Krupko ; N. Kurz ; T. Le Bleis ; B. Löher ; E. Nácher ; Thomas Nilsson (Institutionen för fundamental fysik) ; C. Parrilla ; A. Perea ; N.A. Pietralla ; B. Pietras ; R. Reifarth ; J. Sánchez Del Río ; D. Savran ; S.I. Sidorchuk ; H. Simon ; L. Schnorrenberger ; O. Tengblad ; P. Teubig ; Ronja Thies (Institutionen för fundamental fysik) ; J.A.V. Vilán ; M. Von Schmid ; M. Winkel ; S. Winkler ; F. Wamers ; P. Yañez
Nuclear Data Sheets (0090-3752). Vol. 120 (2014), p. 99-101.
[Konferensbidrag, refereegranskat]

The R3B experiment (Reactions with Relativistic Radioactive Beams) at FAIR (Facility for Antiproton and Ion Research) is a versatile setup dedicated to the study of reactions induced by high-energy radioactive beams. It will provide kinematically complete measurements with high efficiency, acceptance and resolution, making possible a broad physics program with rare-isotopes. CALIFA (CALorimeter for In-Flight detection of gamma-rays and high energy charged pArticles), is a complex detector based on scintillation crystals, that will surround the target of the R3B experiment. CALIFA will act as a total absorption gamma-calorimeter and spectrometer, as well as identifier of charged particles from target residues. This versatility is its most challenging requirement, demanding a huge dynamic range, to cover from low energy gamma-rays up to 300 MeV protons. This fact, along with the high-energy of the beams determine the conceptual design of the detector, presented in this paper, together with the technical solutions proposed for its construction.

Denna post skapades 2014-08-13. Senast ändrad 2015-03-30.
CPL Pubid: 201319


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Institutionen för fundamental fysik (2005-2015)


Subatomär fysik
Acceleratorfysik och instrumentering

Chalmers infrastruktur