A Single Photon Counting Detector Based on One-Dimensional Vernier Anode
The mathematical expression on decoding the one-dimensional (1D) Vernier anode is deduced theoretically, and the corresponding 1D-Vernier anode collector is developed. A photon counting imaging and detection system is constructed based on a 1D-Vernier anode detector and electronic readout subsystem....
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| Published in | Chinese physics letters Vol. 27; no. 5; pp. 257 - 260 |
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| Main Author | |
| Format | Journal Article |
| Language | English |
| Published |
IOP Publishing
01.05.2010
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| Subjects | |
| Online Access | Get full text |
| ISSN | 0256-307X 1741-3540 1741-3540 |
| DOI | 10.1088/0256-307X/27/5/058501 |
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| Abstract | The mathematical expression on decoding the one-dimensional (1D) Vernier anode is deduced theoretically, and the corresponding 1D-Vernier anode collector is developed. A photon counting imaging and detection system is constructed based on a 1D-Vernier anode detector and electronic readout subsystem. With wavelengths of 253.7nm from the mercury lamp as the ultraviolet emission source, the spatial resolution of the prototype is proved to be better than 100 μm along the x-direction in experiment. |
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| AbstractList | The mathematical expression on decoding the one-dimensional (1D) Vernier anode is deduced theoretically, and the corresponding 1D-Vernier anode collector is developed. A photon counting imaging and detection system is constructed based on a 1D-Vernier anode detector and electronic readout subsystem. With wavelengths of 253.7 nm from the mercury lamp as the ultraviolet emission source, the spatial resolution of the prototype is proved to be better than 100 Delta *mm along the x-direction in experiment. The mathematical expression on decoding the one-dimensional (1D) Vernier anode is deduced theoretically, and the corresponding 1D-Vernier anode collector is developed. A photon counting imaging and detection system is constructed based on a 1D-Vernier anode detector and electronic readout subsystem. With wavelengths of 253.7nm from the mercury lamp as the ultraviolet emission source, the spatial resolution of the prototype is proved to be better than 100 μm along the x-direction in experiment. |
| Author | 杨颢 赵宝升 盛立志 李梅 鄢秋荣 刘永安 |
| AuthorAffiliation | State Key Laboratory of Transient Optics and Photonics, Xi'an Institute of Optics and Precision Mechanics, Chinese Academy of Sciences, Xi'an 710119 Graduate University of Chinese Academy of Sciences, Beijing 100049 |
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| Cites_doi | 10.1088/0256-307X/25/7/101 10.1016/S0168-9002(01)01840-X 10.1117/12.316757 10.1016/j.nima.2003.08.017 10.3788/COL20080609.0661 10.1016/S0168-9002(01)01843-5 10.1063/1.1311971 10.7498/aps.57.4238 10.1117/12.186606 10.1117/12.410540 |
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| Snippet | The mathematical expression on decoding the one-dimensional (1D) Vernier anode is deduced theoretically, and the corresponding 1D-Vernier anode collector is... The mathematical expression on decoding the one-dimensional (1D) Vernier anode is deduced theoretically, and the corresponding 1D-Vernier anode collector is... |
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| StartPage | 257 |
| SubjectTerms | Anodes Counting Detectors Electronics Mathematical analysis Photons Ultraviolet emission Wavelengths 光子计数成像 单光子计数 探测器 数学表达式 电子显示器 空间分辨率 |
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| Title | A Single Photon Counting Detector Based on One-Dimensional Vernier Anode |
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