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1.
Relativistic distorted wave study on electron impact excitations
电子碰撞激发过程的相对论扭曲波理论研究
2.
Theoretical Research on Process of Excitation and Ionization in Electron-Complicated Atoms Scattering
对电子与复杂原子碰撞中激发与电离过程的理论研究
3.
Relativistic Distorted Wave Study on the Electronatom (Ion) Impact Excitations;
电子与原子(离子)碰撞激发过程的相对论扭曲波理论研究
4.
Relativistic Distorted Wave Study on the Electron-Atom (Ion) Impact Excitations
相对论扭曲波方法研究电子与原子(离子)碰撞激发过程
5.
Transition Cross-Section Formula of Collisions Between High Excited Hydrogen Atom and Rare Gas Atom in the Presence of A Weak Uniform Electric Field
高激发氢原子同稀有气体原子在均匀弱电场中碰撞跃迁截面公式
6.
Vibrational excitation integrated cross sections of e-H_2 scattering
低能电子与氢分子碰撞的振动激发积分散射截面的研究
7.
Relativistic distorted-wave calculation of electron impact excitation cross sections of be-like N~(3+) and O~(4+) ions
电子与类铍N~(3+)和O~(4+)离子碰撞激发截面的相对论扭曲波计算
8.
Predissociation and Collsional Depopulation of the Cs_2 Excited State;
Cs_2分子激发态预解离与碰撞退布居
9.
Collisional Energy Transfer with the Participation of the Excited Cs Atoms;
激发态Cs原子参与的碰撞能量转移
10.
Predissociation and Collisional Depopulation of Alkali Molecules in the Excited State;
碱分子激发态的预解离和碰撞去布居
11.
Cross sections for energy transfer in collision between two excited state Cs(6P) atoms
激发态Cs(6P)原子间碰撞能量转移截面
12.
proton electron positron colliding beams
质子 电子 正电子碰撞束
13.
Competition between Two Excitation-dissociation Channels for Molecular Ions and Experimental Study on Collision Frequencies of Electrons Produced by Laser with Molecules
分子离子双激发解离通道的竞争研究及激光光电子与中性分子碰撞频率的实验研究
14.
physics of electronic and atomic collisio
电子碰撞和原子碰撞物理学
15.
Study on Electron Collisions with Atomic Ions and Photoionization of Atoms Using R-matrix Method;
用R矩阵方法研究电子与原子、离子的碰撞激发和原子的光电离问题
16.
Theoretical Studies of Collision-induced Energy Transfer within Diatomic Molecules in Excited States;
双原子分子激发态碰撞能量转移的理论研究
17.
Collisional Energy Transfer between the Excitation States of Alkali Molecules and the Ground States of Alkali Atoms;
碱分子激发态与基态原子间的碰撞能量转移
18.
In simple terms, the atomic or molecular electronic after the impact, will be excited to a higher energy state, even ionization.
简单来说,分子或原子受电子碰撞后,会被激发至较高的能态,甚至被电离。