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Study of 2D interpolating readout for a micro-pattern gaseous detector
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作者 董明义 修青磊 +3 位作者 刘荣光 张建 欧阳群 陈元柏 《Chinese Physics C》 SCIE CAS CSCD 2013年第2期44-48,共5页
The two-dimensional interpolating readout, a new readout concept based on resistive anode structure, was studied for the micro-pattern gaseous detector. Within its high spatial resolution, the interpolating resistive ... The two-dimensional interpolating readout, a new readout concept based on resistive anode structure, was studied for the micro-pattern gaseous detector. Within its high spatial resolution, the interpolating resistive readout structure leads to an enormous reduction of electronic channels compared with pure pixel devices, and also makes the detector more reliable and robust, which is attributed to its resistive anode relieving discharge. A GEM (gaseous electron multiplier) detector with 2D interpolating resistive readout structure was set up and the performance of the detector was studied with ^55Fe 5.9 keV X-ray. The detector worked stably at the gain up to 3.5 × 104 without any discharge. An energy resolution of about 19%, and a spatial resolution of about 219 μm (FWHM) were reached, and good imaging performance was also obtained. 展开更多
关键词 interpolating readout resistive anode readout structure micro-pattern gaseous detector gem
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Reconstruction algorithm study of 2D interpolating resistive readout structure
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作者 修青磊 董明义 +3 位作者 刘荣光 张建 欧阳群 陈元柏 《Chinese Physics C》 SCIE CAS CSCD 2013年第10期39-48,共10页
Systematic investigations including both simulation and prototype tests have been done about the interpolating resistive readout structure with GEM (Gaseous Electron Multiplier) detector. From the simulation, we hav... Systematic investigations including both simulation and prototype tests have been done about the interpolating resistive readout structure with GEM (Gaseous Electron Multiplier) detector. From the simulation, we have a good knowledge of the process of charge diffusion on the surface of the readout plane and develop several reconstruction methods to determine the hit position. The total signal duration time of a typical event with the readout structure was about several hundred nanoseconds, which implied an ideal count rate up to 106 Hz. A stable working prototype was designed and fabricated after the simulation. Using 55Fe 5.9 performance of the prototype was examined with flat field image and some special geometry energy resolution of about 17% was obtained. keV X-ray, the image shapes, meanwhile, an 展开更多
关键词 interpolating resistive readout structure micro-pattern gaseous detector gaseous Electron Multiplier two dimensional detectors position reconstruction
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