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Neutron capture cross section measurement of 151Sm at the CERN neutron time of flight facility (n_TOF).

Authors :
Abbondanno U
Aerts G
Alvarez-Velarde F
Alvarez-Pol H
Andriamonje S
Andrzejewski J
Badurek G
Baumann P
Becvár F
Benlliure J
Berthoumieux E
Calviño F
Cano-Ott D
Capote R
Cennini P
Chepel V
Chiaveri E
Colonna N
Cortes G
Cortina D
Couture A
Cox J
Dababneh S
Dahlfors M
David S
Dolfini R
Domingo-Pardo C
Duran I
Embid-Segura M
Ferrant L
Ferrari A
Ferreira-Marques R
Frais-Koelbl H
Furman W
Goncalves I
Gallino R
Gonzalez-Romero E
Goverdovski A
Gramegna F
Griesmayer E
Gunsing F
Haas B
Haight R
Heil M
Herrera-Martinez A
Isaev S
Jericha E
Käppeler F
Kadi Y
Karadimos D
Kerveno M
Ketlerov V
Koehler P
Konovalov V
Krticka M
Lamboudis C
Leeb H
Lindote A
Lopes I
Lozano M
Lukic S
Marganiec J
Marrone S
Martinez-Val J
Mastinu P
Mengoni A
Milazzo PM
Molina-Coballes A
Moreau C
Mosconi M
Neves F
Oberhummer H
O'Brien S
Pancin J
Papaevangelou T
Paradela C
Pavlik A
Pavlopoulos P
Perlado JM
Perrot L
Pignatari M
Plag R
Plompen A
Plukis A
Poch A
Policarpo A
Pretel C
Quesada J
Raman S
Rapp W
Rauscher T
Reifarth R
Rosetti M
Rubbia C
Rudolf G
Rullhusen P
Salgado J
Soares JC
Stephan C
Tagliente G
Tain J
Tassan-Got L
Tavora L
Terlizzi R
Vannini G
Vaz P
Ventura A
Villamarin D
Vincente MC
Vlachoudis V
Voss F
Wendler H
Wiescher M
Wisshak K
Source :
Physical review letters [Phys Rev Lett] 2004 Oct 15; Vol. 93 (16), pp. 161103. Date of Electronic Publication: 2004 Oct 14.
Publication Year :
2004

Abstract

The151Sm(n,gamma)152Sm cross section has been measured at the spallation neutron facility n_TOF at CERN in the energy range from 1 eV to 1 MeV. The new facility combines excellent resolution in neutron time-of-flight, low repetition rates, and an unsurpassed instantaneous luminosity, resulting in rather favorable signal/background ratios. The 151Sm cross section is of importance for characterizing neutron capture nucleosynthesis in asymptotic giant branch stars. At a thermal energy of kT=30 keV the Maxwellian averaged cross section of this unstable isotope (t(1/2)=93 yr) was determined to be 3100+/-160 mb, significantly larger than theoretical predictions.

Details

Language :
English
ISSN :
0031-9007
Volume :
93
Issue :
16
Database :
MEDLINE
Journal :
Physical review letters
Publication Type :
Academic Journal
Accession number :
15524972
Full Text :
https://doi.org/10.1103/PhysRevLett.93.161103