1) autoionizing efficiency
自电离效率
2) ionization efficiency
电离效率
1.
Influence of gas s flux on ionization efficiency in dielectric barrier discharge ion source;
气流量对介质阻挡放电离子源电离效率的影响
2.
Based on the absorption cross section for initial state, the ionization efficiency relating to the energy density of excitation and ionization laser is gained.
用准分子泵浦的染料激光研究了铜原子的二步共振电离,求解了非饱和共振电离过程速率方程,由基态共振吸收截面,计算了电离效率与激发及电离激光能量密度之间的关系,得到了饱和激发电离的流量和通量条件,并进行了讨论。
3.
We calculate the absorption cross section for initial state and excitant state, gained that the ionization efficiency relating to the rate of excitation and ionization and the interaction time respectivily, and obtained the conditions on the photon flux and fluence for saturated excitation and ionization.
计算共振吸收截面,给出电离效率分别与激发速率、电离速率以及作用时间的关系,得出饱和激发电离的流量条件和通量条件。
3) Autoionization rate
自电离几率
4) Autoionization rates
自电离速率
1.
Autoionization rates and dielectronic capture strengths of two other high-Z elements Au and Ta for comparison are also calculated.
采用相对论扭曲波近似方法对高离化态类铜铅离子的自电离速率系数与双电子俘获强度进行了计算。
5) apparent ionization efficiency
表观电离效率
补充资料:碰撞电离(见电离)
碰撞电离(见电离)
collision ionization
pengZhLjo门g凶。川!碰撞电离(eollision ionization)见电离。
说明:补充资料仅用于学习参考,请勿用于其它任何用途。
参考词条