论文标题

融合蒸发反应中新的莫斯维群同位素的合成截面的预测

Prediction for the synthesis cross sections of new moscovium isotopes in fusion-evaporation reactions

论文作者

Chen, Peng-Hui, Wu, Hao, Yang, Zu-Xing, Zeng, Xiang-Hua, Feng, Zhao-Qing

论文摘要

在杂核系统模型的框架内,超速核素的合成机制具有原子数量$ z = 112,114,115 $在弹丸的反应中,$^{40,48} $ ca bambard targets $^{238} $^{238} $ u,$^{242} $ pu和$^0-100 at AT AT AT MEV)已被系统地研究。基于可用的实验激发函数,已经对计算的合成截面对碰撞方向的依赖性进行了彻底研究。这些与固定碰撞取向的碰撞的TKE表明其取向依赖性,可用于预测动能扩散的趋势。 TKE取决于已讨论的事件能量。库仑屏障分布函数的方法已在我们的计算中应用,可以将所有碰撞方向从尖端尖端到侧面的所有碰撞方向处理。 $^{48} $ CA + $^{238} $ U,$^{48} $ CA + $^{242} $ pu和$^{48} $ CA + $^{243} $计算激发功能的计算。已经讨论了弹丸对Moscovium同位素的生产横截面的同胞效应以及入口通道效应对超重核合成横截面的影响。在融合 - 蒸发反应中,已预测了新的莫斯维群同位素$^{278-286} $ mc的合成横截面,$^{35,37} $ cl + $^{248} $ cf,$ cf,$^{38,40} $^{38,40} $ ar + ar + a +^$^$^$^{248} $^{247} $ cm,$^{40,42,44,46} $ ca + $^{238} $ am,$^{45} $ sc + $^{242} $ pu,和$^{46,48,50}激发能量间隔为0-100 MEV。

In the framework of the dinuclear system model, the synthesis mechanism of the superheavy nuclides with atomic number $Z=112, 114, 115$ in the reactions of projectiles $^{40,48}$Ca bombarding on targets $^{238}$U, $^{242}$Pu, and $^{243}$Am at a wide incident energies (excitation energy from 0-100 MeV) have been investigated systematically. Based on the available experimental excitation functions, the dependence of calculated synthesis cross sections on collision orientations has been studied thoroughly. The TKEs of these collisions with the fixed collision orientation show its orientation dependence which can be used to predict the tendency of kinetic energy diffusion. The TKEs are dependent on incident energies which have been discussed. The method of Coulomb barrier distribution function has been applied in our calculations which could treat all of the collision orientations from the tip-tip to side-side approximately. The calculations of excitation functions of $^{48}$Ca + $^{238}$U, $^{48}$Ca + $^{242}$Pu, and $^{48}$Ca + $^{243}$Am have a nice agreement with the available experimental data. The isospin effect of projectiles on production cross sections of moscovium isotopes and the influence of entrance channel effect on the synthesis cross sections of superheavy nuclei have been discussed. The synthesis cross section of new moscovium isotopes $^{278-286}$Mc have been predicted as large as hundreds pb, in the fusion-evaporation reactions of $^{35,37}$Cl + $^{248}$Cf, $^{38,40}$Ar + $^{247}$Bk, $^{39,41}$K + $^{247}$Cm, $^{40,42,44,46}$Ca + $^{238}$Am, $^{45}$Sc + $^{242}$Pu, and $^{46,48,50}$Ti + $^{243}$Np, $^{51}$V + $^{238}$U at the excitation energy interval of 0-100 MeV.

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