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Verification Experiment Of Electron Shunt For Complex Waveguide Grid Micro-channel plate-photomultiplier tube

机译:复合波导电网微通道板 - 光电铂管电子分流器的验证试验

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With further research on the microchannel-plate photoelectric multiple structure of anodized transmission of composite waveguide applied in Free-Space Optical communication, the disadvantage of the models have been found. Firstly, Some analyzes about the constraint conditions and performance of the microchannel-plate photoelectric multiple structure of composite waveguide have been conducted. Secondly, one device model based on one grid-controlled structure of composite waveguide has been introduced and verifiable experiments have been conducted as a support. Then, the capability of electron transport of two structures is compared by theoretical analyzes. Lastly, the difference between performances of these two structures has been confirmed by verifiable experiments with optical axis positioning by four-quadrant in a vacuum. Results of the experiment have showed that the grid-controlled structure of composite waveguide would be likely to be widely applied in the special detection for its advantages in the future.
机译:利用进一步研究在自由空间光学通信中施加的复合波导的阳极氧化阳极氧化阳极氧化阳极氧化传输的微通道板光电多结构,已经找到了模型的缺点。首先,已经进行了关于复合波导的微通道板光电多结构的约束条件和性能的一些分析。其次,已经引入了一种基于一个电网控制结构的复合波导结构的一个设备模型,并且已经进行了可验证的实验作为支撑。然后,通过理论分析比较了两种结构的电子传输能力。最后,通过在真空中通过四象限的光轴定位通过验证的实验证实了这两个结构的性能之间的差异。实验结果表明,复合波导的电网控制结构可能在未来的特殊检测中广泛应用于其优势。

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