Paper
8 March 2017 Verification experiment of electron shunt for complex waveguide grid micro-channel plate-photomultiplier tube
Author Affiliations +
Proceedings Volume 10255, Selected Papers of the Chinese Society for Optical Engineering Conferences held October and November 2016; 102552X (2017) https://doi.org/10.1117/12.2264879
Event: Selected Papers of the Chinese Society for Optical Engineering Conferences held October and November 2016, 2016, Jinhua, Suzhou, Chengdu, Xi'an, Wuxi, China
Abstract
With further research on the micro channel-plate(MCP) 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 MCP 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.
© (2017) COPYRIGHT Society of Photo-Optical Instrumentation Engineers (SPIE). Downloading of the abstract is permitted for personal use only.
Xu Gao, Yi-Ning Mu, Ye Li, Yue Du, and MeiTing Wang "Verification experiment of electron shunt for complex waveguide grid micro-channel plate-photomultiplier tube", Proc. SPIE 10255, Selected Papers of the Chinese Society for Optical Engineering Conferences held October and November 2016, 102552X (8 March 2017); https://doi.org/10.1117/12.2264879
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KEYWORDS
Composites

Waveguides

Microchannel plates

Electrodes

Instrument modeling

Clouds

Performance modeling

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