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用于闪光X射线测量的具有平坦能量响应的补偿闪烁探测器。

Compensational scintillation detector with a flat energy response for flash X-ray measurements.

作者信息

Chen Liang, Ouyang Xiaoping, Liu Bin, Liu Jinliang, Quan Lin, Zhang Zhongbing

机构信息

Radiation Detection Research Center, Northwest Institute of Nuclear Technology, P.O. Box 69-9, Xi'an, Shaanxi 710024, People's Republic of China.

出版信息

Rev Sci Instrum. 2013 Jan;84(1):013103. doi: 10.1063/1.4788730.

Abstract

To measure the intensity of flash X-ray sources directly, a novel scintillation detector with a fast time response and flat energy response is developed by combining film scintillators of doped ZnO crystal and fast organic scintillator together. Through compensation design, the dual-scintillator detector (DSD) achieved a flat energy response to X-rays from tens of keV to several MeV, and sub-nanosecond time response by coupling to ultrafast photo-electronic devices. A prototype detector was fabricated according to the theoretical design; it employed ZnO:In and EJ228 with thicknesses of 0.3 mm and 0.1 mm, respectively. The energy response of this detector was tested on monoenergetic X-ray and γ-ray sources. The detector performs very well with a sensitivity fluctuation below 5% for 8 discrete energy points within the 40-250 keV energy region and for other energies of 662 keV and 1.25 MeV as well, showing good accordance with the theoretical design. Additionally, the detector works properly for the application to the flash X-ray radiation field absolute intensity measurement. This DSD may be very useful for the diagnosis of time-resolved dynamic physical processes of flash X-ray sources without knowing the exact energy spectrum.

摘要

为了直接测量闪光X射线源的强度,通过将掺杂ZnO晶体的薄膜闪烁体与快速有机闪烁体结合在一起,研制出一种具有快速时间响应和平坦能量响应的新型闪烁探测器。通过补偿设计,双闪烁体探测器(DSD)对几十keV到几MeV的X射线实现了平坦的能量响应,并通过与超快光电器件耦合实现了亚纳秒级的时间响应。根据理论设计制作了一个原型探测器;它分别采用了厚度为0.3mm的ZnO:In和厚度为0.1mm的EJ228。该探测器在单能X射线和γ射线源上测试了能量响应。该探测器表现良好,在40 - 250keV能量区域内的8个离散能量点以及662keV和1.25MeV的其他能量下,灵敏度波动低于5%,与理论设计吻合良好。此外,该探测器在用于闪光X射线辐射场绝对强度测量的应用中工作正常。这种双闪烁体探测器对于在不知道确切能谱的情况下诊断闪光X射线源的时间分辨动态物理过程可能非常有用。

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