论文标题

对非对称重离子 - 原子碰撞中(准)共振电子捕获过程的强烈相对论效应

Strong relativistic effect on (quasi)resonance electron-capture processes in non-symmetrical heavy ion-atom collisions

论文作者

Kozhedub, Y. S., Bondarev, A. I., Cai, X., Ma, X., Plunien, G., Shabaev, V. M., Shao, C., Tupitsyn, I. I., Yang, B., Yu, D.

论文摘要

(Quasi)在非对称$(z {\ rm p} \ simeq 2z _ {\ rm t})$ heewion-ion-atom碰撞中使用半经典的dirac-fock-fock-fock-fock-fock-fock-fock-fock-fock-fock-fock-fock-coupled-coupled-coupled模型研究了共鸣的共振电子捕获过程。 %特别注意研究相对论效应的作用。 Systematic calculations of the electron-capture cross sections of the target $K$-shell electrons to the $L$ subshel​​ls of the projectile have been carried out for the collisions of bare thorium $(Z_{\rm P}=90)$ and zinc $(Z_{\rm P}=30)$ nuclei with hydrogenlike ions $(Z_{\rm t} = 36 $ - $ 47)$和$(z _ {\ rm t} = 12 $ - $ 15)$,相应地。强烈的相对论效果,对于低能策略中的Th $^{90+} $ -RU $^{43+}(1s)$碰撞至关重要。在两电子系统的碰撞过程中发生的各种单电子捕获过程Th $^{90+} $ - ru $^{42+}(1S^2)$已在较宽的碰撞范围内进行了详细研究,$ 0.5 $ - $ 50 $ 50 $ 〜mev/u。还提出了双电子捕获过程的冲击参数依赖性。我们的研究表明,相对论效应在过程中起着非常重要的作用,这在低能制度中至关重要。

(Quasi)resonance electron-capture processes in non-symmetrical $(Z_{\rm P} \simeq 2Z_{\rm T})$ heavy ion-atom collisions are studied employing a semiclassical atomic Dirac-Fock-Sturm orbital coupled-channel approach within an independent-particle model. %A special attention has been paid to study a role of the relativistic effects. Systematic calculations of the electron-capture cross sections of the target $K$-shell electrons to the $L$ subshells of the projectile have been carried out for the collisions of bare thorium $(Z_{\rm P}=90)$ and zinc $(Z_{\rm P}=30)$ nuclei with hydrogenlike ions $(Z_{\rm T}=36$-$47)$ and $(Z_{\rm T}=12$-$15)$, correspondingly. Strong relativistic effects, crucial for the case of Th$^{90+}$-Ru$^{43+}(1s)$ collisions in the low-energy regime, are found. Various one- and two-electron capture processes occurring in course of the collisions of the two-electron system Th$^{90+}$-Ru$^{42+}(1s^2)$ have been investigated in details in the wide range of collision energies $0.5$-$50$~MeV/u. The impact parameter dependencies of the double electron-capture processes are also presented. Our study demonstrates a very significant role of the relativistic effects for the processes, which becomes crucial in the low-energy regime.

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