论文标题

部分可观测时空混沌系统的无模型预测

Upgrading the Beam Telescopes at the DESY II Test Beam Facility

论文作者

Augustin, H., Diener, R., Dittmeier, S., Freeman, P. M., Hammerich, J., Herkert, A., Huth, L., Immig, D., Krämer, U., Meyners, N., Perić, I., Schäfer, O., Schöning, A., Simancas, A., Stanitzki, M., Stuart, D., Weinläder, B.

论文摘要

DESY II测试梁设施是现代高能物理探测器开发的关键基础设施,为颗粒提供了较小的动量扩散在1到6 GEV到用户组的范围,例如来自LHC实验和Belle II以及通用检测器研发。光束望远镜在所有三个测试梁区域都提供,作为精确的跟踪参考,无需时间冲压,触发读数和读数时间> 115 $μ$ s。如果使用了最高的可用速率,则多个粒子正在一个读出框架内穿越望远镜,从而创建了没有其他正时层无法解决的歧义。目前正在研究和测试几次升级:首先,一个快速的单片像素传感器Telepix,以提供精确的轨道时机并在感兴趣的区域上触发以克服此限制。 Telepix是一个180 nm HV-CMOS传感器,由Desy,Kit和Heidelberg大学共同开发,并在Kit设计。在本出版物中,介绍了绩效评估:评估了两个放大器设计之间的差异。在可忽略不计的像素噪声速率下,高于99.9%的高命中检测效率与低于4 ns的时间分辨率相结合。最后,评估了数字命中输出以提供感兴趣的触发区域,并显示了有关传统触发器闪烁体以及出色的时间分辨率的绝对绝对延迟。其次,已经提出了一个快速的LGAD平面,以提供几个10 ps的时间分辨率,这可以预见,可以极大地提高望远镜的时机性能。与加利福尼亚大学圣塔芭芭拉分校合作确定了低于70 PS的时间决议。

The DESY II Test Beam Facility is a key infrastructure for modern high energy physics detector development, providing particles with a small momentum spread in a range from 1 to 6 GeV to user groups e.g. from the LHC experiments and Belle II as well as generic detector R&D. Beam telescopes are provided in all three test beam areas as precise tracking reference without time stamping, with triggered readout and a readout time of > 115 $μ$s. If the highest available rates are used, multiple particles are traversing the telescopes within one readout frame, thus creating ambiguities that cannot be resolved without additional timing layers. Several upgrades are currently investigated and tested: Firstly, a fast monolithic pixel sensor, the TelePix, to provide precise track timing and triggering on a region of interest is proposed to overcome this limitation. The TelePix is a 180 nm HV-CMOS sensor that has been developed jointly by DESY, KIT and the University of Heidelberg and designed at KIT. In this publication, the performance evaluation is presented: The difference between two amplifier designs is evaluated. A high hit detection efficiency of above 99.9 % combined with a time resolution of below 4 ns at negligible pixel noise rates is determined. Finally, the digital hit output to provide region of interest triggering is evaluated and shows a short absolute delay with respect to a traditional trigger scintillator as well as an excellent time resolution. Secondly, a fast LGAD plane has been proposed to provide a time resolution of a few 10 ps, which is foreseen to drastically improve the timing performance of the telescope. Time resolutions of below 70 ps have been determined in collaboration with the University of California, Santa Barbara.

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