论文标题
以闪光电子光束产生的流浪辐射为特征是Minipix timepix3 flex检测器
Stray radiation produced in FLASH electron beams characterized by the MiniPIX Timepix3 Flex detector
论文作者
论文摘要
这项工作旨在使用混合半导体像素检测器来表征超高剂量脉冲(UHDPULSE)电子束。 TimePix3(TPX3)ASIC芯片用于测量来自脉冲15至23 MeV电子束的次级辐射场的组成,空间,时间和光谱特征。面临的挑战是开发单个紧凑型检测器,该检测器可以在如此高通量短脉冲场上提取光谱和剂量计。对于次级束测量,将1和8 cm厚度的PMMA板放在电子束前方,脉冲持续时间为3.5微秒。将带有100和500微米硅厚度的硅传感器的TimePix3检测器放置在转移阶段,从而使数据采集到梁轴的各个横向位置。在FlexI配置中使用检测器可以实现适当的测量和最小的自我屏蔽。初步结果突出了技术和检测器测量以短脉冲传递的电子束的单个UHDPULS的能力。另外,每个像素的两个信号链的使用可以使粒子通量和散射剂量速率(DR)在远离梁芯的各个距离,在混合辐射场中的各个距离进行估计。
This work aims to characterize ultra high dose rate pulses (UHDpulse) electron beams using the hybrid semiconductor pixel detector. The Timepix3 (TPX3) ASIC chip was used to measure the composition, spatial, time, and spectral characteristics of the secondary radiation fields from pulsed 15 to 23 MeV electron beams. The challenge is to develop a single compact detector that could extract spectrometric and dosimetric information on such high flux short pulsed fields. For secondary beam measurements, PMMA plates of 1 and 8 cm thickness were placed in front of the electron beam, with a pulse duration of 3.5 microseconds. Timepix3 detectors with silicon sensors of 100 and 500 micrometers thickness were placed on a shifting stage allowing for data acquisition at various lateral positions to the beam axis. The use of the detector in FLEXI configuration enables suitable measurements in situ and minimal self shielding. Preliminary results highlight both the technique and the detector's ability to measure individual UHDpulses of electron beams delivered in short pulses. In addition, the use of the two signal chains per pixel enables the estimation of particle flux and the scattered dose rates (DRs) at various distances from the beam core, in mixed radiation fields.