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首页> 外文期刊>Nuclear instruments and methods in physics research >Charge collection mapping of a novel ultra-thin silicon strip detector for hadrontherapy beam monitoring
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Charge collection mapping of a novel ultra-thin silicon strip detector for hadrontherapy beam monitoring

机译:新型强硅射线监测用超薄硅条探测器的电荷收集图

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摘要

In precise hadrontherapy treatments, the particle beam must be monitored in real time without being degraded. Silicon strip detectors have been fabricated over an area as large as 4.5 × 4.5 cm~2 with ultra low thickness of 20 μm. These offer the following considerable advantages: significantly reduced beam scattering, higher radiation hardness which leads to improved detector lifetime, and much better collection efficiency. In a previous work, the novel sensor has been described and a global macroscopic dosimetry characterization has been proposed. This provides practical information for the detector daily use but not about the local microscopic knowledge of the sensor. This work therefore presents a micrometric-accuracy charge-collection characterization of this new generation of ultra-thin silicon strip detectors. This goal is reached thanks to a 1060 nm-wavelength micrometric-sized laser that can be positioned relatively to the sensor with a submicron precision for the three different axes. This study gives a much better knowledge of the inefficient areas of the sensor and allows therefore optimization for future designs.
机译:在精确的强子疗法治疗中,必须实时监控粒子束而不会使其退化。硅条探测器已在4.5×4.5 cm〜2的大面积上制造,厚度超薄为20μm。这些具有以下显着优点:大大减少了光束散射,提高了辐射硬度,从而延长了探测器的使用寿命,并大大提高了采集效率。在先前的工作中,已经描述了新型传感器,并且已经提出了全局宏观剂量学表征。这为检测器的日常使用提供了实用信息,但没有提供有关传感器的局部微观知识的实用信息。因此,这项工作提出了这种新一代超薄硅条检测器的微米精度电荷收集特性。这个目标的实现归功于1060 nm波长的微米级激光,该激光可以相对于传感器定位,在三个不同的轴上具有亚微米的精度。这项研究可以更好地了解传感器的低效率区域,因此可以优化将来的设计。

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