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Thin CVD diamond detectors with high charge collection efficiency

机译:具有高电荷收集效率的薄CVD金刚石探测器

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We report the measurements of charge collection efficiency for nuclear particle detectors made from electronic grade CVD diamond samples with thicknesses of 20 μm, and 150 μm elaborated at CEA/LETI. Although it is well established that the transport properties of CVD diamond, and more specifically the μτ product, tends to improve with the sample thickness, it was observed that excellent collection efficiencies can be achieved on the 20 μm thick detector owing to the reduced inter electrode distance. Due to the polycrystalline nature of CVD diamond, the charge collection efficiency is inhomogeneous throughout the detector surface. However, a mean collection efficiency of 50 % was measured over the hole, detector surface, with regions close to 100%, corresponding to the highest values reported in literature for CVD diamond. This excellent performance enables the detection of very low energy heavy charged particles with a detection limit* well below 200 keV for protons.
机译:我们报告了由电子级CVD金刚石样品制成的核粒子探测器的电荷收集效率的测量,厚度为20μm,在CEA / Leti阐述了150μm。尽管很好地确定了CVD金刚石的运输性能,更具体地说,μT产物倾向于采样厚度改善,但观察到由于电极的互联电极的减小的晶片,可以在20μm厚的探测器上实现优异的收集效率距离。由于CVD金刚石的多晶性质,在整个探测器表面中充电效率是不均匀的。然而,在孔,探测器表面上测量50%的平均收集效率,该区域接近100%,对应于CVD金刚石的文献中报告的最高值。这种优异的性能使得能够检测非常低的能量重带电粒子,其检测限*良好低于200keV的质子。

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