Investigation of spallation reactions on 120Sn and (d, xn), (d, pxn), (p, xn), and (p, pxn) reactions on enriched tin isotopes
A. R. BalabekyanJoint Institute for Nuclear Research, Dubna, Moscow oblast, 141980, RussiaA. S. DanagulyanYerevan State University, ul. A. Manukyana 1, Yerevan, 375049, ArmeniaJ. R. DrnoyanYerevan State University, ul. A. Manukyana 1, Yerevan, 375049, ArmeniaN. A. DemekhinaYerevan Institute of Physics, ul. Brat’ev Alikhanian 2, Yerevan, 375036, ArmeniaJ. AdamJoint Institute for Nuclear Research, Dubna, Moscow oblast, 141980, RussiaV. G. KalinnikovJoint Institute for Nuclear Research, Dubna, Moscow oblast, 141980, RussiaM.I. KrivopustovJoint Institute for Nuclear Research, Dubna, Moscow oblast, 141980, RussiaVitaly PronskikhJoint Institute for Nuclear Research, Dubna, Moscow oblast, 141980, RussiaV. I. StegailovJoint Institute for Nuclear Research, Dubna, Moscow oblast, 141980, RussiaA. A. SolnishkinJoint Institute for Nuclear Research, Dubna, Moscow oblast, 141980, RussiaP. ČhalounJoint Institute for Nuclear Research, Dubna, Moscow oblast, 141980, RussiaV. M. Tsoupko-SitnikovJoint Institute for Nuclear Research, Dubna, Moscow oblast, 141980, RussiaG. MusulmanbekovJoint Institute for Nuclear Research, Dubna, Moscow oblast, 141980, Russia
ABI
Annotatsiya
The cross sections for (d, xn), (d, pxn), (p, xn), and (p, pxn) reactions on enriched tin isotopes are obtained at a projectile energy of 3.65 GeV per nucleon. The yields in the energy range 0.66–8.1 GeV are analyzed with resort to experimental data obtained previously. Experimental data are compared with the results of theoretical calculations performed within the cascade-evaporation model. The dependence of the yields on the number of emitted neutrons, the projectile type, and the isotopic composition of a target is investigated. The cross sections for the (p, xpyn) reactions on a 120Sn target are presented at a primary-proton energy of 0.66 GeV.
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