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首页> 外文期刊>Nuclear Instruments & Methods in Physics Research >Obtaining spectroscopic information with the ATLAS FE-I4 pixel readout chip
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Obtaining spectroscopic information with the ATLAS FE-I4 pixel readout chip

机译:使用ATLAS FE-I4像素读出芯片获得光谱信息

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The ATLAS FE-I4 pixel readout chip is a 2 × 2 cm~2 state-of-the-art ASIC that is used in high-energy physics experiments and for research and development purposes. It is optimized for high hit rates and radiation hardness, but it provides only limited charge resolution. Therefore, a method generally used for the characterization of binary readout chips is presented and applied to the FE-I4 to obtain spectroscopic information with high resolution. The method relies on the ability to change the detection threshold in small steps, while measuring the particle rate, in order to record the integrated single pixel charge-spectra. The challenges resulting from the large number of channels (28,880), such as inhomogeneous threshold, low statistics per pixel and effects of charge sharing, are discussed. Charge spectra of an ATLAS FE-I4 bump bonded to a 230 μm 3D-silicon sensor from radioactive sources and electron beams are analyzed and presented. The results show that a charge resolution close to the electronic noise can be achieved proving the potential of this approach.
机译:ATLAS FE-I4像素读出芯片是2×2 cm〜2的最先进ASIC,可用于高能物理实验以及研究和开发目的。它针对高命中率和辐射硬度进行了优化,但仅提供有限的电荷分辨率。因此,提出了通常用于表征二进制读出芯片的方法,并将其应用于FE-I4以获得高分辨率的光谱信息。该方法依赖于在测量粒子速率的同时以较小的步长改变检测阈值的能力,以便记录积分的单个像素电荷谱。讨论了由大量通道(28,880)引起的挑战,例如阈值不均匀,每个像素的统计量较低以及电荷共享的影响。分析并介绍了从放射源和电子束中粘结到230μm3D硅传感器的ATLAS FE-I4凸点的电荷谱。结果表明,可以实现接近电子噪声的电荷分辨率,证明了这种方法的潜力。

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