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|Title:||Excitation Functions of (n, 2n), (n,p), (n, np+pn+d), and (n, alpha) Reactions on Isotopes of Chromium.|
|Authors:||FESSLER Andreas; WATTECAMPS Eric desire; SMITH D.l.; QAIM S.m.|
|Citation:||Physical Review C vol. 58 p. 996-1004|
|Type:||Articles in periodicals and books|
|Abstract:||Excitation functions were measured for the 52Cr(n, 2n)51Cr, 52Cr(n, p)52 V, 53Cr(n, p)53V, 53Cr(n, np,+pn+d)52V, 54Cr(n,p)54V, 54Cr(n, np+pn+d)53V and 54Cr(n, alpha)51Ti reactions from 9 to 21 MeV. Use was made of the activation technique in combination with high-resolution gamma-ray spectrometry. Monoenergetic neutrons produced via the 2H(d,n)3He and 3H(d,n)4He reactions were used to irradiate samples of metallic chromium. 52Cr2O3 and 54Cr2O3. The neutron fluence rates were determined via the 27Al(n,p)27Mg, 27Al(n,alpha)24Na, 56Fe(n,p)56Mn, and 93Nb(n,2n)92mNb monitor reactions. Short-lived activities were investigated using a pneumatic sample transport system. Statistical model calculations taking into account pre-equilibrium effects were performed for all the reactions using a consistent set of model parameters. The experimental excitation functions helped appreciably to resolve the discrepancies in evaluated data files. Good agreement was found between our experimental data and the new model calculations.|
|JRC Institute:||Health, Consumers and Reference Materials|
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