학술논문

Coulomb dissociation of $^{20,21}$N
Document Type
Working Paper
Author
Röder, MarkoAdachi, TatsuyaAksyutina, YuliaAlcantara, JuanAltstadt, SebastianAlvarez-Pol, HectorAshwood, NicholasAtar, LeylaAumann, ThomasAvdeichikov, VladimirBarr, M.Beceiro, SaulBemmerer, DanielBenlliure, JoseBertulani, CarlosBoretzky, KonstanzeBorge, Maria J. G.Burgunder, G.Caamano, ManuelCaesar, ChristophCasarejos, EnriqueCatford, WiltonCederkall, JoakimChakraborty, S.Chartier, MarielleChulkov, LeonidCortina-Gil, DoloresCrespo, RaquelPramanik, Ushasi DattaDiaz-Fernandez, PalomaDillmann, IrisElekes, ZoltanEnders, JoachimErshova, OlgaEstrade, A.Farinon, F.Fraile, Luis M.Freer, MartinFreudenberger, M.Fynbo, HansGalaviz, DanielGeissel, HansGernhäuser, RomanGöbel, KathrinGolubev, PavelDiaz, Diego GonzalezHagdahl, JuliusHeftrich, TanjaHeil, MichaelHeine, MarcelHeinz, AndreasHenriques, AnaHoll, MatthiasIckert, G.Ignatov, AlexanderJakobsson, BoJohansson, HakanJonson, BjörnKalantar-Nayestanaki, NasserKanungo, RituparnaKelic-Heil, AleksandraKnöbel, RonjaKröll, ThorstenKrücken, ReinerKurcewicz, J.Kurz, NikolausLabiche, MarcLanger, ChristophBleis, Tudi LeLemmon, RoyLepyoshkina, OlgaLindberg, SimonMachado, JorgeMarganiec, JustynaCaro, Magdalena MostazoMovsesyan, AlinaNajafi, Mohammad AliNilsson, ThomasNociforo, ChiaraPanin, ValeriiPaschalis, StefanosPerea, AngelPetri, MarinaPietri, S.Plag, RalfProchazka, A.Rahaman, Md. AnisurRastrepina, GannaReifarth, ReneRibeiro, GuillermoRicciardi, M. ValentinaRigollet, CatherineRiisager, KarstenRossi, DominicSaez, Jose Sanchez del RioSavran, DenizScheit, HeikoSimon, HaikSorlin, OlivierStoica, V.Streicher, BranislavTaylor, JonTengblad, OlofTerashima, SatoruThies, RonjaTogano, YasuhiroUberseder, EthanVan de Walle, J.Velho, PauloVolkov, VasilyWagner, AndreasWamers, FelixWeick, HelmutWeigand, MarioWheldon, CarlWilson, G.Wimmer, ChristineWinfield, J. S.Woods, PhilipYakorev, DmitryZhukov, MikhailZilges, AndreasZuber, Kai
Source
Phys. Rev. C 93, 065807 (2016)
Subject
Nuclear Experiment
Language
Abstract
Neutron-rich light nuclei and their reactions play an important role for the creation of chemical elements. Here, data from a Coulomb dissociation experiment on $^{20,21}$N are reported. Relativistic $^{20,21}$N ions impinged on a lead target and the Coulomb dissociation cross section was determined in a kinematically complete experiment. Using the detailed balance theorem, the $^{19}\mathrm{N}(\mathrm{n},\gamma)^{20}\mathrm{N}$ and $^{20}\mathrm{N}(\mathrm{n},\gamma)^{21}\mathrm{N}$ excitation functions and thermonuclear reaction rates have been determined. The $^{19}\mathrm{N}(\mathrm{n},\gamma)^{20}\mathrm{N}$ rate is up to a factor of 5 higher at $T<1$\,GK with respect to previous theoretical calculations, leading to a 10\,\% decrease in the predicted fluorine abundance.