会议论文详细信息
14th International Workshop on Slow Positron Beam Techniques & Applications
Low energy positron beam system for the investigation of 2D and porous materials
Chrysler, M.D.^1 ; Chirayath, V.A.^1 ; McDonald, A.D.^1 ; Gladen, R.W.^1 ; Fairchild, A.J.^1 ; Koymen, A.R.^1 ; Weiss, A.H.^1
University of Texas at Arlington, Arlington
TX, United States^1
关键词: Coincidence doppler broadening;    High purity germanium detectors;    Micro channel plate;    Positron beam system;    Simultaneous measurement;    Structure of surfaces;    Time-of-flight techniques;    University of Texas;   
Others  :  https://iopscience.iop.org/article/10.1088/1742-6596/791/1/012008/pdf
DOI  :  10.1088/1742-6596/791/1/012008
来源: IOP
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【 摘 要 】

An advanced variable energy positron beam (∼2 eV to 20 keV) has been designed, tested and utilized for coincidence Doppler broadening (CDB) measurements at the University of Texas at Arlington (UTA). A high efficiency solidified rare gas (Neon) moderator was used for the generation of a slow positron beam. The gamma rays produced as a result of the annihilation of positrons with the sample electrons are measured using a high purity Germanium (HPGe) detector in coincidence with a NaI(Tl) detector. Modifications to the system, currently underway, permits simultaneous measurements utilizing Positron annihilation induced Auger Electron Spectroscopy (PAES) and CDB. The tendency of positrons to become trapped in an image potential well at the surface will allow the new system to be used in measurements of the chemical structure of surfaces, internal or external and interfaces. The system will utilize a time of flight (TOF) technique for electron energy measurements. A 3m flight path from the sample to a micro-channel plate (MCP) in the new system will give it superior energy resolution at higher electron energies as compared to previous TOF systems utilizing shorter flight paths.

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