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Experimental validation of electron trajectory in electrostatic mirror to enhance spatial and timing resolution in foil-based alpha Time-of-Flight spectrometers
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DOI:10.1016/j.rinp.2026.108711.png)
Abstract
En 中文
• Systematic electrostatic mirror optimization reduces electron transport time spread by 20 %. • Experimental validation confirms simulations of electron impact positions in A-TOF detectors. • Smaller MCP detectors can be used without loss of timing performance, enabling compact design. • Demonstrates precise control of electron penetration depth via adjustable mirror voltages.
Keywords:
Time-of-flight spectrometer
Transmission detectors
Electron impact distribution
CSTsoftware
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