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Journal of Instrumentation | 2015

A method to simulate the observed surface properties of proton irradiated silicon strip sensors

T. Peltola; A. Bhardwaj; Ranjeet Dalal; Robert Eber; T. Eichhorn; Kavita Lalwani; A. Messineo; Martin Printz; K. Ranjan

During the scheduled high luminosity upgrade of LHC, the worlds largest particle physics accelerator at CERN, the position sensitive silicon detectors installed in the vertex and tracking part of the CMS experiment will face more intense radiation environment than the present system was designed for. To upgrade the tracker to required performance level, extensive measurements and simulations studies have already been carried out. A defect model of Synopsys Sentaurus TCAD simulation package for the bulk properties of proton irradiated devices has been producing simulations closely matching with measurements of silicon strip detectors. However, the model does not provide expected behavior due to the fluence increased surface damage. The solution requires an approach that does not affect the accurate bulk properties produced by the proton model, but only adds to it the required radiation induced properties close to the surface. These include the observed position dependency of the strip detectors charge collection efficiency (CCE). In this paper a procedure to find a defect model that reproduces the correct CCE loss, along with other surface properties of a strip detector up to a fluence


Proceedings of Technology and Instrumentation in Particle Physics 2014 — PoS(TIPP2014) | 2015

Simulations of Inter-Strip Capacitance and Resistance for the Design of the CMS Tracker Upgrade

T. Eichhorn; A. Bhardwaj; Ranjeet Dalal; Robert Eber; Kavita Lalwani; A. Messineo; T. Peltola; Martin Printz; K. Ranjan

1.5\times10^{15}


Archive | 2014

Development of Radiation Damage Models for Irradiated Silicon Sensors Using TCAD Tools

Ranjeet Dalal; A. Bhardwaj; Robert Eber; T. Eichhorn; Kavita Lalwani; A. Messineo; T. Peltola; K. Ranjan

1 MeV n

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Robert Eber

Karlsruhe Institute of Technology

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Martin Printz

Karlsruhe Institute of Technology

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