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Status of silicon edgeless detector developments for close-to-beam experiments

机译:硅无边探测器在近光束实验中的发展现状

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The development of silicon edgeless strip detectors was stimulated by the needs of the TOTEM experiment at CERN to detect protons scattered at very small angles (i.e. close-to-beam applications). The setup of the TOTEM Roman Pots demands a dead region at the detector-sensitive diced side (or cut) that should be less than 50 μm.rnDuring the design phase, two approaches were proposed: detectors with current terminating structure (the CTS approach) and 3D active edge detectors. The planar detectors with a CTS were developed by a collaboration of TOTEM and Russian institutions. The key idea of the CTS approach is the ability to control the current distribution at the sensitive cut by incorporating special rings along the detector edge. In the study, the approach using edgeless detectors with a CTS is overviewed in its physical background and its potential for future applications in close-to-beam experiments, including the requirements for the radiation hardness of the detector. The current experimental results on edgeless p-on-n detectors obtained in the framework of the TOTEM experiment and the INTAS-CERN project are also presented. This approach, using an edgeless p-on-n detector with a CTS design, was successfully realized in the final size TOTEM detectors and allowed achieving a total non-sensitive width of about 50 μm.
机译:无核硅无边条检测器的发展受到CERN的TOTEM实验的需要的刺激,以检测以很小的角度散布的质子(即接近束的应用)。 TOTEM Roman Pots的设置要求在检测器敏感的切块切成一面(或切块)的盲区应小于50μm.rn在设计阶段,提出了两种方法:具有电流终止结构的检测器(CTS方法)和3D主动边缘检测器。带有CTS的平面探测器是由TOTEM和俄罗斯机构合作开发的。 CTS方法的关键思想是能够通过沿检测器边缘并入特殊环来控制敏感切口处的电流分布。在这项研究中,概述了将无边缘探测器与CTS结合使用的方法,并概述了其物理背景及其在近光实验中未来应用的潜力,包括对探测器辐射硬度的要求。还介绍了在TOTEM实验和INTAS-CERN项目框架下获得的无边沿p-n-n检测器的当前实验结果。这种方法使用具有CTS设计的无边沿p-n-n检测器,已在最终尺寸的TOTEM检测器中成功实现,并实现了约50μm的总非敏感宽度。

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