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Measurement of the n_TOF beam profile with a micromegas detector

✍ Scribed by J. Pancin; U. Abbondanno; G. Aerts; H. Alvarez; S. Andriamonje; A. Angelopoulos; P. Assimakopoulos; C. Bacri; G. Badurek; P. Baumann; F. Bečvář; H. Beer; J. Benlliure; B. Berthier; E. Berthoumieux; S. Boffi; C. Borcea; E. Boscolo-Marchi; N. Bustreo; F. Calvino; D. Cano-ott; R. Capote; P. Carlson; P. Cennini; V. Chepel; E. Chiaveri; N. Colonna; G. Cortes; D. Cortina; A. Couture; J. Cox; S. Dababneh; M. Dahlfors; S. David; A. Delbart; J. Derre; R. Dolfini; C. Domingo; I. Duran-Escribano; C. Eleftheriadis; M. Embid-Segura; L. Ferrant; A. Ferrari; L. Ferreira-Lourenco; R. Ferreiramarques; H. Frais-Koelbl; W. Furman; Y. Giomataris; I. Goncalves; E. Gonzalez-Romero; A. Goverdovski; F. Gramegna; E. Griesmayer; F. Gunsing; R. Haight; M. Heil; A. Herrera-Martinez; K. Ioannides; N. Janeva; F. Jeanneau; E. Jericha; F. Käppeler; Y. Kadi; D. Karamanis; A. Kelic; V. Ketlerov; G. Kitis; P. Koehler; V. Konovalov; E. Kossionides; V. Lacoste; H. Leeb; A. Lindote; I. Lopes; M. Lozano; S. Lukic; S. Markov; S. Marrone; J. Martinez-Val; P. Mastinu; A. Mengoni; P. Milazzo; E. Minguez; A. Molina-Coballes; C. Moreau; F. Neves; H. Oberhummer; S. O'brien; I. Papadopoulos; T. Papavengelou; C. Paradela; A. Pavlik; P. Pavlopoulos; A. Perez-Parra; J. Perlado; V. Peskov; L. Perrot; V. Peskov; R. Plag; A. Plompen; A. Plukis; A. Poch; A. Policarpo; C. Pretel; J. Quesada; M. Radici; S. Raman; W. Rapp; R. Reifarth; F. Rejmund; M. Rosetti; C. Rubbia; G. Rudolf; P. Rullhusen; J. Salgado; E. Savvidis; C. Stephan; G. Tagliente; J. Tain; C. Tapia; L. Tassan-Got; L. Tavora; R. Terlizzi; M. Terrani; N. Tsangas; G. Vannini; P. Vaz; A. Ventura; D. Villamarin-Fernandez; M. Vincente-Vincente; V. Vlachoudis; R. Vlastou; F. Voss; H. Wendler; M. Wiescher; K. Wisshak; L. Zanini


Publisher
Elsevier Science
Year
2004
Tongue
English
Weight
541 KB
Volume
524
Category
Article
ISSN
0168-9002

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✦ Synopsis


A Micromegas detector was used in the neutron Time-Of-Flight ðn TOFÞ facility at CERN to evaluate the spatial distribution of the neutron beam as a function of its kinetic energy. This was achieved over a large range of neutron energies by using two complementary processes: at low energy by capture of a neutron via the 6 Liðn; aÞt reaction, and at high energy by elastic scattering of neutrons on gas nuclei (argon+isobutane or helium+isobutane). Data are compared to Monte Carlo simulations and an analytic function fitting the beam profile has been calculated with a sufficient precision to use in neutron capture experiments at the n TOF facility.


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