Al-Ajaleen M, Tőkési K
Institute for Nuclear Research (ATOMKI), Debrecen, 4026, Hungary.
Doctoral School of Physics, University of Debrecen, Egyetem tér 1, Debrecen, 4032, Hungary.
Sci Rep. 2023 Aug 28;13(1):14080. doi: 10.1038/s41598-023-41134-0.
We present a theoretical study of the ionization of nitrogen atom by a singly charged sodium ion using the classical trajectory Monte Carlo method. Although we suffer from a lack of cross section data of this collision system, the knowledge of the basic cross sections is essential in fusion science, because this reaction has potential applications in the diagnostic of magnetically confined fusion plasmas. In our investigations, the Na-N collision system is reduced to a three-body problem. The interaction between the collision partners is described by the Garvey-type model potential. The results of our study provide insight into the dynamics of singly charged sodium-nitrogen interactions. The total cross sections are presented in the impact energy range between 10 keV and 10 MeV and compared them with the available experimental data. The single and double differential cross sections are presented at 30, 40, 50 and 60 keV energies related to the energies of the plasma diagnostic used in the nuclear fusion.
我们使用经典轨迹蒙特卡罗方法对单电荷钠离子与氮原子的电离过程进行了理论研究。尽管我们缺乏该碰撞系统的截面数据,但了解基本截面在聚变科学中至关重要,因为此反应在磁约束聚变等离子体诊断方面具有潜在应用。在我们的研究中,钠 - 氮碰撞系统简化为三体问题。碰撞粒子间的相互作用由加维型模型势描述。我们的研究结果有助于深入了解单电荷钠 - 氮相互作用的动力学。给出了10 keV至10 MeV碰撞能量范围内的总截面,并与现有实验数据进行了比较。还给出了与核聚变中用于等离子体诊断的能量相关的30、40、50和60 keV能量下的单微分截面和双微分截面。