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A new transition radiation detector to detect heavy nuclei around the knee

机译:一种新的过渡辐射探测器,用于检测膝盖周围的重核

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The overall cosmic ray intensity spectrum falls as a constant power law over at least 11 decades of particle energy. One of the only features in this spectrum is the slight change in power law index near 10~(15) eV, often called the 'knee' of the spectrum. Accurate measurements of cosmic ray elemental abundances into this energy region are expected to reveal the origin of this feature, and possibly the nature of cosmic ray sources. The extremely low intensity of particles at these energies (a few per m~2 per year) makes the detection challenging. Since only direct measurements have so far proved reliable for the accurate determination of elemental composition, a large-area, light weight, device is needed to achieve long exposures above the atmosphere - either on high-altitude balloons or spacecraft. here we report on a detector which uses the x-ray transition radiation yield from plastic foams to provide a response into the knee region or heavy elements. We use individual xenon-filled gas proportional tubes as detectors, combined with Amplex ASIC chip electronics for readout. The construction of this type of detector, and its implementation in the upcoming NASA CREAM 100 day high-altitude balloon payload is described. Also discussed is the calibration of the detector in an accelerator beam at CERN and a comparison with GEANT4 Monte Carlo simulations.
机译:整体宇宙射线强度谱在粒子能的至少11数十年中作为恒定的动力法下降。该频谱中唯一一个的特征是电力法指数的轻微变化,附近10〜(15)eV,通常称为频谱的“膝盖”。预计将宇宙射线元素丰富的准确测量预计将揭示该特征的起源,并可能是宇宙射线源的性质。这些能量的粒子极低强度(每年每年少数几)使得检测挑战。由于只有直接测量到目前为止,对于准确测定元素组成的准确测定,需要大面积,重量轻,装置需要在大气中高于大气中的长曝光 - 无论是高空气球还是航天器。在这里,我们报告了一种检测器,该检测器利用来自塑料泡沫的X射线过渡辐射率,以提供进入膝部区域或重元件的响应。我们使用单独的氙气的气体比例管作为探测器,结合Amplex AsiC芯片电子器件进行读出。描述了这种探测器的构建,并描述了即将到来的NASA奶油100天高空球囊有效载荷中的实施。还讨论的是,据核心射频在CERN的加速度梁中的校准以及与GEANT4 MONTE CARLO模拟的比较。

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