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Photodisintegration of heavy nuclei in the energy region above the giant dipole resonance

机译:巨型偶极子共振以上能量区域中重核的光分解

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摘要

Experimental data on yields of multiparticle photonuclear reactions (involving the emission of up to seven neutrons from the nucleus involved) on ~(197)Au, ~(203,205)Tl, and ~(209)Bi nuclei in the region extending from the giant dipole resonance to an energy of 67.7 MeV are presented. These data are compared with the results of modern theoretical calculations that take into account both the excitation of a giant dipole resonance (GDR) in a nucleus and the photodisintegration of quasideutrons (QD) in it. By and large, experimental data confirm the results of theoretical calculations-that is, only upon taking simultaneously into account both alternative photodisintegration mechanisms (GDR excitation and QD photodisintegration) can one describe these experimental data. The contribution of QD photodisintegration grows with increasing photon energy and neutron multiplicity and becomes dominant for reactions involving the emission of not less than five neutrons from the nucleus being considered. The integrated cross sections for the processes in question were estimated on the basis of simultaneously employing experimental yields of multinucleon photonuclear reactions and the respective cross-section shapes calculated theoretically.
机译:关于在从巨型偶极子延伸的区域中〜(197)Au,〜(203,205)Tl和〜(209)Bi核上的多粒子光核反应(涉及从所涉及的核中发射多达七个中子的发射)的实验数据共振能量为67.7 MeV。这些数据与现代理论计算的结果进行了比较,现代理论计算既考虑了原子核中巨子偶极共振(GDR)的激发,又考虑了其中的准电子加速器(QD)的光分解。总体而言,实验数据证实了理论计算的结果,也就是说,只有同时考虑到两种可供选择的光崩解机制(GDR激发和QD光崩解),才能描述这些实验数据。 QD光崩解的贡献随着光子能量和中子多重性的增加而增长,并在涉及从核中发射不少于五个中子的反应中占主导地位。在同时采用多核子光核反应的实验产率和理论上计算出的各个横截面形状的基础上,估算了所讨论过程的综合横截面。

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