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Development of Large area Gamma-ray Camera with GSO(Ce) Scintillator Arrays and PSPMTs

机译:具有GSO(Ce)闪烁体阵列和PSPMT的大面积伽马射线照相机的研制

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摘要

We have developed a position-sensitive scintillation camera with a large area absorber for use as an advanced Compton gamma-ray camera. At first we tested GSO(Ce) crystals. We compared light output from the GSO(Ce) crystals under various conditions: the method of surface polishing, the concentration of Ce, and co-doping Zr. As a result, we chose the GSO(Ce) crystals doped with only 0.5 mol% Ce, and its surface polished by chemical etching as the scintillator of our camera. We also made a 16$\times$16 cm$^2$ scintillation camera which consisted of 9 position-sensitive PMTs (PSPMTs Hamamatsu flat-panel H8500), the each of which had 8$\times$8 anodes with a pitch of 6 mm and coupled to 8$\times$8 arrays of pixelated 6$\times6\times$13 mm$^3$ GSO(Ce) scintillators. For the readout system of the 576 anodes of the PMTs, we used chained resistors to reduce the number of readout channels down to 48 to reduce power consumption. The camera has a position resolution of less than 6mm and a typical energy resolution of 10.5% (FWHM) at 662 keV at each pixel in a large area of 16$\times$16 cm$^2$. %to choose the best scintillator for our project. Furthermore we constructed a 16$\times$16 array of 3$\times3\times$13 mm$^3$ pixelated GSO(Ce) scintillators, and glued it to a PMT H8500. This camera had the position resolution of less than 3mm, over an area of 5$\times$5 cm$^2$, except for some of the edge pixels; the energy resolution was typically 13% (FWHM) at 662 keV.
机译:我们开发了具有大面积吸收体的位置敏感型闪烁照相机,用作先进的康普顿伽马射线照相机。首先,我们测试了GSO(Ce)晶体。我们比较了GSO(Ce)晶体在各种条件下的光输出:表面抛光的方法,Ce的浓度和Zr的共掺杂。结果,我们选择了仅掺有0.5 mol%Ce的GSO(Ce)晶体,并将其表面通过化学蚀刻抛光作为相机的闪烁器。我们还制作了一个16倍16厘米2 ^ 2美元的闪烁照相机,它由9个位置敏感的PMT(PSPMT滨松平板H8500)组成,每一个都有8倍8个阳极,节距为6毫米并耦合到8×8×8像素化的6×13mm ^ 3 $ GSO(Ce)闪烁体阵列。对于PMT的576个阳极的读出系统,我们使用链式电阻器将读出通道的数量减少到48个,以减少功耗。该相机的位置分辨率小于6mm,在16ke×x16 cm $ ^ 2 $的大面积中,每个像素的典型能量分辨率为662keV时,典型能量分辨率为10.5%(FWHM)。为我们的项目选择最佳的闪烁体。此外,我们构建了一个3×3×13 mm $ ^ 3 $像素化的GSO(Ce)闪烁体的16×16阵列,并将其粘贴到PMT H8500上。该相机的位置分辨率小于3mm,在5 $ \ x $ 5 cm $ ^ 2 $的区域内,除了一些边缘像素;在662 keV时,能量分辨率通常为13%(FWHM)。

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