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Photonuclear reactions on stable isotopes of selenium at bremsstrahlung end-point energies of 10−23 MeV

F. A. RasulovaDLNP, JINR, Jolio Curie, Dubna, Dubna, Moscow, 141980, RUSSIAN FEDERATIONN. V. AksenovLNR, JINR, Jolio Curie, Dubna, Dubna, Moscow, 141980, RUSSIAN FEDERATIONS.I. AlekseevР. А. АлиевFaculty of Chemistry, Lomonosov Moscow State University Faculty of Chemistry, Moscow, Russia, Moskva, Moskva, 119991, RUSSIAN FEDERATIONС. С. БелышевMoscow State University, 1-2 Leninskiye Gory, Moskva, Moskva, 119991, RUSSIAN FEDERATIONIlya ChuprakovN. Yu. FursovaPysics, Moscow State University, 1-2 Leninskiye Gory, Moskva, Moskva, 119991, RUSSIAN FEDERATIONAlexander Shavkatovich MadumarovJurabek Khushvaktov, Dubna, Moscow region, Russia, Dubna, 141985, RUSSIAN FEDERATIONА. А. КузнецовPysics, Moscow State University, 1-2 Leninskiye Gory, Moskva, Moskva, 119991, RUSSIAN FEDERATIONB. S. YuldashevINP Academy of Sciences of the Republic of Uzbekistan, Xuroson, Tashkent, 100214, UZBEKISTAN
Chinese Physics Cjournal2023en
ABI

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Abstract In this study, experiments were performed at bremsstrahlung end-point energies of 10−23 MeV with the beam from the MT-25 microtron using the γ -activation technique. The experimental values of relative yields were compared with theoretical results obtained on the basis of TALYS with the standard parameters and the combined model of photonucleon reactions. Including isospin splitting in the combined model of photonucleon reactions allows describing experimental data on reactions with proton escape in the energy range from 10 to 23 MeV. Therefore, taking into account isospin splitting is necessary for a correct description of the decay of the giant dipole resonance.

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