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Technology developments and first measurements on inverse Low Gain Avalanche Detector (iLGAD) for high energy physics applications

机译:逆向低增益雪崩探测器(iLGAD)的技术发展和首次测量,用于高能物理应用

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摘要

ABSTRACT: The first Inverse Low Gain Avalanche Detector (iLGAD) have been fabricated at IMB-CNM (CSIC). The iLGAD structure includes the multiplication diffusions at the ohmic contact side while the segmentation is implemented at the front side with multiple P + diffusions. Therefore, iLGAD is P on P position-sensitive detector with a uniform electric field all along the device area that guarantees the same signal amplification wherever a particle passes through the sensitive bulk solving the main draw of the LGAD microstrip detector. However, the detection current is dominated by holes flowing back from the multiplication junction with the subsequent transient current pulse duration increase in comparison with conventional LGAD counterparts. Applications of iLGAD range from tracking and timing applications like determination of primary interaction vertex to medical imaging. The paper addresses the optimization of the iLGAD structure with the aid of TCAD simulations, focusing on the electric field profiles of iLGAD and LGAD microstrip structures and the corresponding gain. The electrical performance of the first fabricated samples is also provided. For the first time, we have experimental demonstrate the signal amplification of this novel iLGAD detector
机译:摘要:IMB-CNM(CSIC)制造了第一台反向低增益雪崩检测器(iLGAD)。 iLGAD结构在欧姆接触侧包括乘法扩散,而在正面通过多个P +扩散实现分段。因此,iLGAD是P位置P探测器上的P,在整个器件区域上具有均匀的电场,从而无论粒子通过敏感的体积如何,都能保证相同的信号放大,从而解决了LGAD微带探测器的主要问题。然而,与传统的LGAD相比,检测电流主要由从乘法结流回的空穴占据,随后的瞬态电流脉冲持续时间增加。 iLGAD的应用范围包括跟踪和计时应用,例如确定主要相互作用顶点到医学成像。本文借助TCAD仿真研究了iLGAD结构的优化,重点是iLGAD和LGAD微带结构的电场分布以及相应的增益。还提供了第一个制造的样品的电性能。我们首次通过实验证明了这种新型iLGAD检测器的信号放大

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