Zhao Y T, Zhang Y N, Cheng R, He B, Liu C L, Zhou X M, Lei Y, Wang Y Y, Ren J R, Wang X, Chen Y H, Xiao G Q, Savin S M, Gavrilin R, Golubev A A, Hoffmann D H H
MOE Key Laboratory for Nonequilibrium Synthesis and Modulation of Condensed Matter,School of Science, Xian Jiaotong University, Xian 710049, China.
Institute of Modern Physics, Chinese Academy of Sciences, Lanzhou 730000, China.
Phys Rev Lett. 2021 Mar 19;126(11):115001. doi: 10.1103/PhysRevLett.126.115001.
We report on a precision energy loss measurement and theoretical investigation of 100 keV/u helium ions in a hydrogen-discharge plasma. Collision processes of helium ions with protons, free electrons, and hydrogen atoms are ideally suited for benchmarking plasma stopping-power models. Energy loss results of our experiments are significantly higher than the predictions of traditional effective charge models. We obtained good agreement with our data by solving rate equations, where in addition to the ground state, also excited electronic configurations were considered for the projectile ions. Hence, we demonstrate that excited projectile states, resulting from collisions, leading to capture-, ionization-, and radiative-decay processes, play an important role in the stopping process in plasma.
我们报告了在氢放电等离子体中对100 keV/u氦离子的精确能量损失测量和理论研究。氦离子与质子、自由电子和氢原子的碰撞过程非常适合用于检验等离子体阻止本领模型。我们实验的能量损失结果显著高于传统有效电荷模型的预测。通过求解速率方程,我们得到了与数据的良好吻合,其中除了基态外,还考虑了入射离子的激发电子组态。因此,我们证明了由碰撞导致的入射离子激发态,在等离子体中的阻止过程中,对俘获、电离和辐射衰变过程起着重要作用。