科技报告详细信息
Photocathode Optimization for a Dynamic Transmission Electron Microscope: Final Report
Ellis, P ; Flom, Z ; Heinselman, K ; Nguyen, T ; Tung, S ; Haskell, R ; Reed, B W ; LaGrange, T
关键词: ALIGNMENT;    CLOUDS;    CURRENT DENSITY;    DATA ACQUISITION;    ELECTRON GUNS;    ELECTRON MICROSCOPES;    ELECTRON SOURCES;    ELECTRONS;    FOCUSING;    GEOMETRY;    LASERS;    OPTICS;    OPTIMIZATION;    PHOTOCATHODES;    PHOTOEMISSION;    RESOLUTION;    SYNCHRONIZATION;    TANTALUM;   
DOI  :  10.2172/1022922
RP-ID  :  LLNL-SR-492012
PID  :  OSTI ID: 1022922
Others  :  TRN: US201118%%846
美国|英语
来源: SciTech Connect
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【 摘 要 】

The Dynamic Transmission Electron Microscope (DTEM) team at Harvey Mudd College has been sponsored by LLNL to design and build a test setup for optimizing the performance of the DTEM's electron source. Unlike a traditional TEM, the DTEM achieves much faster exposure times by using photoemission from a photocathode to produce electrons for imaging. The DTEM team's work is motivated by the need to improve the coherence and current density of the electron cloud produced by the electron gun in order to increase the image resolution and contrast achievable by DTEM. The photoemission test setup is nearly complete and the team will soon complete baseline tests of electron gun performance. The photoemission laser and high voltage power supply have been repaired; the optics path for relaying the laser to the photocathode has been finalized, assembled, and aligned; the internal setup of the vacuum chamber has been finalized and mostly implemented; and system control, synchronization, and data acquisition has been implemented in LabVIEW. Immediate future work includes determining a consistent alignment procedure to place the laser waist on the photocathode, and taking baseline performance measurements of the tantalum photocathode. Future research will examine the performance of the electron gun as a function of the photoemission laser profile, the photocathode material, and the geometry and voltages of the accelerating and focusing components in the electron gun. This report presents the team's progress and outlines the work that remains.

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