School of Physics, Northwest University, Xi'an 710127, People's Republic of China.
J Phys Condens Matter. 2023 Jul 17;35(41). doi: 10.1088/1361-648X/ace2a3.
Understanding the ion-solid interactions of charged particles in materials facilitates the development of ion beam irradiation techniques. Combining Ehrenfest dynamics and time-dependent density-functional theory, we investigated the electronic stopping power (ESP) of an energetic proton in GaN crystal and studied the ultrafast dynamic interaction between the proton and target atoms during the nonadiabatic process. We found a crossover phenomenon of ESP at 0.36 a.u. along the <100> and <110> channels, which is interpreted by the charge transfer between the host material and the projectile and the stopping force exerted on the proton. At velocities of 0.2 and 1.7 a.u., we demonstrated that the reversal of the average number of charge transfer and the average axial force resulted in the reversed energy deposition rate and ESP in the corresponding channel. Further analysis of the evolution of non-adiabatic electronic states revealed the existence of the transient and semi-stable N-H chemical bonding during irradiation process, which is introduced by the electron clouds overlap of Nhybridization and theorbitals of the proton. These results provide meaningful information for the interactions between energetic ions and matter.
理解带电粒子在材料中的离子-固体相互作用有助于离子束辐照技术的发展。我们结合 Ehrenfest 动力学和含时密度泛函理论,研究了高能质子在 GaN 晶体中的电子阻止本领(ESP),并研究了非绝热过程中质子与靶原子之间的超快动态相互作用。我们在 <100>和 <110>通道中发现了 ESP 在 0.36 a.u.处的交叉现象,这可以通过宿主材料和射弹之间的电荷转移以及对质子施加的阻止力来解释。在速度为 0.2 和 1.7 a.u.时,我们证明了平均电荷转移数量和平均轴向力的反转导致了相应通道中能量沉积速率和 ESP 的反转。对非绝热电子态演化的进一步分析揭示了在辐照过程中存在瞬态和半稳定的 NH 化学键,这是由 N 杂化和质子的 theorbitals 的电子云重叠引入的。这些结果为高能离子与物质之间的相互作用提供了有意义的信息。