碘化铯

  • 网络Cesium Iodide;CSI
碘化铯碘化铯
  1. 主要有碘化铯(铊激活)闪烁体、硅PIN光电二极管、电荷灵敏放大器组成。

    It be mainly made from CsI ( TI ) scintillation , silicon PIN photodiodes and charge-sensitive amplifier .

  2. 聚乙烯-碘化铯中子阴极的最佳化

    The optimization of a polyethylene CSI neutron cathode

  3. 应用SEM研究碘化铯光阴极的微观结构

    Analysing the Microstructures of the CsI Photocathode with SEM

  4. 本文应用XPS(X射线光电子能谱仪)研究了真空烘烤对碘化铯光阴极化学状态的影响。

    The effects of vacuum-baking on the chemical state of CsI photocathodes are studied with X-ray photoelectron spectroscopy ( XPS ) .

  5. 目的探索碘化铯/非晶硅数字摄影系统(间接DR)拍摄胸片的适宜管电压。

    Objective To investigate the optimal beam tube potential for amorphous silicon / cesium iodide flat panel digital chest radiography ( indirect DR ) .

  6. 用Bridgman方法制备了掺铊的碘化铯晶体。

    Crystal samples of caesium iodide doped with thallium were prepared by Bridgman method .

  7. 分别用自制浸渍碘化铯(CsI)针式环状碳纤维阴极和环状不锈钢阴极所产生的电子束轰击尼龙目击靶,研究碳纤维阴极发射均匀性。

    The electron beams produced by the needle-shaped annular carbon fiber-coated cathode soaked with cesium iodide ( CsI ) salt and annular stainless steel cathode were separately used to bombard the nylon targets .

  8. 这是冷却,滤出沉淀的二氯碘化铯。

    It is cool and filter the precipitated caesium dichloroiodide .

  9. 掺铊碘化铯晶体的生长缺陷

    Defects of CsI ( Tl ) Crystals

  10. 碘化铯非晶硅平板探测器的原理及应用

    Principle and application of a-Si sensor panel

  11. 碘化铯晶体中Ph~(2+)基聚集相的发光性质

    Luminescence Properties of Pb ~ ( 2 + ) - Based Aggregates in CsI Host Crystals

  12. 中子扫描变象管的静态实验证实了聚乙烯加碘化铯组合中子阴极的可行性和理论分析的正确性。

    The results of static experiments agree well with the theoretical analysis and prove the new neutron cathode is feasible .

  13. 实验结果表明在高真空环境中,碘化铯光阴极在低于180℃的烘烤条件下即以缓慢的速率升华,但是,它的化学状态是稳定的。

    The experimental results indicate that when the vacuum-baking temperature is below 180 ℃ the chemical states of CsI photocathode are stable , but there is a low rate sublimation of CsI in high vacuum .

  14. 介绍了4π带电粒子多探测器系统,该系统由276个探测器单元组成,每个单元分别由快、慢塑料闪烁体、碘化铯晶体、硅半导体探测器所组成的望远镜构成。

    A 4 π multidetector array of measuring charged particle is described . It consists of 276 detector units , each unit composed of fast and slow plastic scintillator phoswiches , fast plastic scintillator and CsI ( Tl ) phoswiches and silicon detector telescopes .