Open AccessJournal Article
The paris project
A. Maj,F. Azaiez,D. G. Jenkins,Ch. Schmitt,O. Stezowski,J.P. Wieleczko,D. L. Balabanski,P. Bednarczyk,S. Brambilla,F. Camera,D. R. Chakrabarty,M. Che # stowska,S. Courtin,M. Csatlós,Zsolt Dombrádi,O. Dorvaux,J. Dudek,M. N. Erduran,S. Erturk,B. Fornal,S. Franchoo,Georgi P. Georgiev,J. Gulyás,S. Harissopoulos,Pankaj S. Joshi,M. Kici"ska-Habior,M. Kmiecik,A. Krasznahorkay,G. Anil Kumar,Suresh Kumar,M. Labiche,I. Mazumdar,K. Mazurek,W. M # czy # ski,S. Myalski,V. Nanal,P. J. Napiorkowski,J. Peyre,J. Pouthas,Oliver J. Roberts,Marc Rousseau,J. A. Scarpaci,Austin Smith,I. Stefan,John Paul Strachan,D. P. Watts,M. Zi # bli # ski +46 more
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TL;DR: The PARIS project as discussed by the authors developed and built a high-efficiency gamma-calorimeter for use at SPIRAL2, which is intended to comprise a double shell of scintillators and use the novel scintillation material LaBr3(Ce).
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Abstract: The PARIS project is an initiative to develop and build a high-efficiency gamma-calorimeter principally for use at SPIRAL2. It is intended to comprise a double shell of scintillators and use the novel scintillator material LaBr3(Ce), which promises a step-change in energy and time resolutions over what is achievable using conventional scintillators. The array could be used in a stand-alone mode, in conjunction with an inner particle detection system, or with high-purity germanium arrays. Its potential physics opportunities as well as initial designs and simulations will be discussed.
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Citations
Conceptual design of the AGATA 1π array at GANIL
E. Clément,C. Michelagnoli,H. J. Li,A. Lemasson,C. Barthe Dejean,M. Beuzard,P. Bougault,J. Cacitti,J.-L. Foucher,G. Frémont,P. Gangnant,J. Goupil,C. Houarner,M. Jean,A. Lefevre,L. Legeard,F. Legruel,C. Maugeais,L. Ménager,N. Ménard,H. Munoz,M. Ozille,B. Raine,J. Ropert,F. Saillant,C. Spitaels,M. Tripon,Ph. Vallerand,G. Voltolini,W. Korten,M. D. Salsac,Ch. Theisen,M. Zielińska,T. Joannem,M. Karolak,M. Kebbiri,A. Lotode,R. Touzery,Ch. Walter,A. Korichi,J. Ljungvall,A. Lopez-Martens,D. Ralet,N. Dosme,X. Grave,N. Karkour,X. Lafay,E. Legay,I. Kojouharov,C. Domingo-Pardo,A. Gadea,R. M. Perez-Vidal,J.V. Civera,B. Birkenbach,J. Eberth,Herbert Hess,L. Lewandowski,P. Reiter,A. Nannini,G. de Angelis,G. Jaworski,P. R. John,D. R. Napoli,J. J. Valiente-Dobón,Diego Barrientos,Damiano Bortolato,G. Benzoni,A. Bracco,S. Brambilla,F. Camera,F. C. L. Crespi,S. Leoni,B. Million,Alberto Pullia,O. Wieland,D. Bazzacco,S. M. Lenzi,S. Lunardi,R. Menegazzo,D. Mengoni,F. Recchia,Marco Bellato,Roberto Isocrate,F. J. Egea Canet,F. Didierjean,G. Duchêne,R. Baumann,M. Brucker,E. Dangelser,M. Filliger,H. Friedmann,G. Gaudiot,J.-N. Grapton,H. Kocher,C. Mathieu,M.-H. Sigward,D. Thomas,S. Veeramootoo,J. Dudouet,O. Stezowski,C. Aufranc,Y. Aubert,M. Labiche,J. Simpson,I. Burrows,P. J. Coleman-Smith,Alec Grant,I.H. Lazarus,P.S. Morrall,V. F. E. Pucknell,A. J. Boston,D. S. Judson,N. Lalović,Johan Nyberg,J. Collado,Vicente González,István Kuti,B. M. Nyakó,A. Maj,M. Rudigier +119 more
TL;DR: The Advanced GAmma Tracking Array (AGATA) has been installed at the GANIL facility, Caen-France as discussed by the authors, where it has been designed to couple AGATA with a magnetic spectrometer, charged-particle and neutron detectors, scintillators for the detection of high energy γ rays and other devices such as a plunger to measure nuclear lifetimes.
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NPTool: a simulation and analysis framework for low-energy nuclear physics experiments
TL;DR: The Nuclear Physics Tool (NPTool) as discussed by the authors is an open source data analysis and Monte Carlo simulation framework that has been developed for low-energy nuclear physics experiments with an emphasis on radioactive beam experiments.
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The neutron-rich edge of the nuclear landscape: Experiment and theory.
TL;DR: In this article, the authors describe the experimental facilities and methods which make it possible to produce and measure the properties of the extreme neutron-rich nuclei, and develop the theoretical framework that predicts and explains these properties; the shell model approach with large-scale configuration interaction (mixing) SM-CI, with special emphasis in the competition between the spherical mean field and the nuclear correlations (mainly pairing and quadrupole-quadrupole).
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In-beam spectroscopy of heavy elements
TL;DR: In this paper, the authors present the most recent developments and results in the field, building upon previous reviews with a similar theme, and present a review of the current state-of-the-art.
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The SPES project at the INFN- Laboratori Nazionali di Legnaro
G. Pretea,Alberto Andrighetto,Mattia Manzolaro,Stefano Corradetti,Daniele Scarpa,M. Rossignoli,A. Monetti,M. Lollo,M. Calderolla,J. Vasquez,D. Zafiropoulos,L. Sarchiapone,D. Benini,P. Favaron,M. Rigato,R. Pegoraro,D. Maniero,Luciano Calabretta,Michele Comunian,Mario Maggiore,Alessandra Lombardi,L. Piazza,A.M. Porcellato,C. Roncolato,G. Bisoffi,A. Pisent,Alessio Galatà,M. Giacchini,G. Bassato,S. Canella,F. Gramegna,J. Valiente,J. Bermudez,P. F. Mastinu,Juan Esposito,J. Wyss,S. Zanella +36 more
- 01 Mar 2014
TL;DR: The SPES Radioactive Ion Beam (RIB) facility at INFN-LNL is in the construction phase as discussed by the authors, which is based on the ISOL method with an UCx Direct Target able to sustain a power of 10 kW.
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