光致电离

  • 网络photoionization;photo-ionization;photoion-ization
光致电离光致电离
  1. 光致电离增大NaF晶体F3~+心浓度

    Enhancement of F_3 ~ + Centers in NaF Crystals with Photoionization

  2. 钠、钾原子光致电离截面的计算

    The calculation of photoionization cross sections for sodium and potassium

  3. 同步辐射软X射线能区Ar原子光致电离截面的研究

    Research of Photoionization Cross-Section of Argon in Soft X-Ray Region of Synchrotron Radiation

  4. F2心光致电离的研究

    A study for F_2 center ionized by light

  5. 氟化锂晶体F2心光致电离及F2和F2~+心激光特性研究

    Study on photoionization of F_2 centers and laser performance of F_2 and F_2 ~ + centers in LiF

  6. 本文对LiF、NaF晶体中的F2心光致电离为F2~+心作了初步研究。

    The ionization of F2 center in LiF and NaF crystals are explored in this paper .

  7. NaF和NaF:Mg~(++)晶体色心光致电离研究

    Study on photoionization of NaF and NaF : Mg ~ ( + + ) centers

  8. 用Xα法和Slater过渡态理论计算了碱金属元素Na、K、Rb、Cs基态原子的光致电离截面;

    Photoionization cross sections for the ground-state alkali-metal atoms Na , K , Rb , and Cs are calculated by using the X α method and Slater transition-state theory .

  9. 结果表明:光致电离检测器可以实现对氙的特征性检出;

    The result showed that xenon could be characteristic detected by PID ;

  10. 碱金属基态原子光致电离截面的理论研究

    Theoretical investigation of the photo-ionization cross sections for the ground-state alkali-metal atoms

  11. 高增益砷化镓光导开关中的光致电离效应

    Photo-Ionization Effects in High Gain Gallium Arsenide Photoconductive Semiconductor Switches

  12. 量子线中施主杂质的光致电离截面

    The photoionization cross section of donor impurities in the quantum well wires

  13. 所有的原子和分子系统都受光致电离和光致离解的影响。

    All the atomic and molecular systems are subject to photoionization and photodissociation .

  14. 本文用组态相互作用理论研究He原子的非谐振光致电离。

    We present the nonresonant photoionization of the He atom using a simple configuration-interaction approach .

  15. 气体是由光致电离加热的。

    The gas is heated by photoionization .

  16. 光致电离温度比色温度高,它们都随新星亮度的下降而升高。

    Photoionization temperatures are higher than the corresponding colour tempera Lures . They were increasing with the decline of nova brightness .

  17. 为了深入了解这一放电现象的物理机制,采用基于光致电离的物理模型研究了这一现象。

    In order to understand the discharge mechanism deeply , in this paper , a simple model based on photoionization is developed .

  18. 本文研究了光致电离检测器的检测性能和四种活性碳纤维对氙的动态吸附,并且讨论了影响活性碳纤维动态吸附氙的两个影响因素。

    This article studied the characteristic detection of xenon by photoionization detector ( PID ) and the dynamic adsorption of xenon by activated carbon fiber ( ACF ), two factors that influenced the dynamic adsorption of xenon by ACF were discussed .

  19. 光致氩原子电离的平衡电荷态分布

    The charge state distribution of argon after photoionization

  20. 光致荧光及其在电离辐射剂量测量中的应用

    Introduction to the Application of OSL in Radiation Dosimetry