Abstract
Reliability of the data on partial photoneutron reactions on \({}^{90}\) Zr obtained in the experiment carried out on the beam of bremsstrahlung was investigated using the experimental-theoretical method for partial reaction cross section evaluation based on objective physical criteria. It is found out that ( \(\gamma\) , \(1n\) ) and ( \(\gamma\) , \(2n\) ) reaction cross sections obtained using the corrections calculated via statistical theory to the neutron yield cross section \(\sigma(\gamma,xn)=\sigma(\gamma,1n)+2\sigma(\gamma,2n)\) satisfy physical criteria of data reliability. The integrated characteristics of the cross sections of the reactions ( \(\gamma\) , \(1n\) ) and ( \(\gamma\) , \(2n\) ) in which the distinct structural features were obtained, and the experimentally measured neutron yield cross section \(\sigma\) ( \(\gamma\) , \(xn\) ) agree with those of evaluated cross sections. This shows that information on \({}^{90}\) Zr partial reactions competition obtained using statistical theory satisfies physical criteria of data reliability. The evaluated reaction cross sections are compared in detail with analogous data obtained before using the results of experiments carried out on the beams of quasimonoenergetic annihilation photons.