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Performance of n-in-p pixel detectors irradiated at fluences up to $5x10^{15} n_{eq}/cm^{2}$ for the future ATLAS upgrades

机译:对于未来的ATLAS升级,以$ 5x10 ^ {15} n_ {eq} / cm ^ {2} $的注量辐照的n-in-p像素检测器的性能

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摘要

We present the results of the characterization of novel n-in-p planar pixel detectors, designed for the future upgrades of the ATLAS pixel system. N-in-p silicon devices are a promising candidate to replace the n-in-n sensors thanks to their radiation hardness and cost effectiveness, that allow for enlarging the area instrumented with pixel detectors. The n-in-p modules presented here are composed of pixel sensors produced by CiS connected by bump-bonding to the ATLAS readout chip FE-I3. The characterization of these devices has been performed with the ATLAS pixel read-out systems, TurboDAQ and USBPIX, before and after irradiation with 25 MeV protons and neutrons up to a fluence of 5x10**15 neq /cm2. The charge collection measurements carried out with radioactive sources have proven the feasibility of employing this kind of detectors up to these particle fluences. The collected charge has been measured to be for any fluence in excess of twice the value of the FE-I3 threshold, tuned to 3200 e. The first results from beam test data with 120 GeV pions at the CERN-SPS are also presented, demonstrating a high tracking efficiency before irradiation and a high collected charge for a device irradiated at 10**15 neq /cm2. This work has been performed within the framework of the RD50 Collaboration.
机译:我们介绍了新颖的n-in-p平面像素检测器的表征结果,这些检测器是为ATLAS像素系统的未来升级而设计的。 N-P硅器件由于其辐射硬度和成本效益而成为替代N-N-N传感器的有前途的候选者,从而可以扩大像素检测器的安装面积。这里介绍的n-in-p模块由CiS产生的像素传感器组成,该像素传感器通过凸点键合连接到ATLAS读出芯片FE-I3。在用25 MeV质子和中子辐照直至5x10 ** 15 neq / cm2的通量之前和之后,已经使用ATLAS像素读出系统TurboDAQ和USBPIX对这些设备进行了表征。用放射性源进行的电荷收集测量已经证明了使用这种探测器达到这些粒子通量的可行性。已测量收集到的电荷的通量超过FE-I3阈值(调整为3200 e)的两倍。还展示了在CERN-SPS上用120 GeV离子进行的束测试数据的第一个结果,表明以10 ** 15 neq / cm2辐照的器件在辐照之前具有很高的跟踪效率,并具有很高的收集电荷。这项工作是在RD50合作框架内完成的。

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