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Radiation damage in the LHCb Vertex Locator

Published 21 Feb 2013 in physics.ins-det and hep-ex | (1302.5259v1)

Abstract: The LHCb Vertex Locator (VELO) is a silicon strip detector designed to reconstruct charged particle trajectories and vertices produced at the LHCb interaction region. During the first two years of data collection, the 84 VELO sensors have been exposed to a range of fluences up to a maximum value of approximately 45×10<sup>12 1 MeV\rm{45 \times 10<sup>{12}\,1\,MeV} neutron equivalent (1 MeV neq\rm{1\,MeV\,n_{eq}}). At the operational sensor temperature of approximately −7 <sup>∘C-7\,<sup>{\circ}\rm{C}, the average rate of sensor current increase is $18\,\upmu\rm{A}$ per fb<sup>−1\rm{fb<sup>{-1}}, in excellent agreement with predictions. The silicon effective bandgap has been determined using current versus temperature scan data after irradiation, with an average value of Eg=1.16±0.03±0.04 eVE_{g}=1.16\pm0.03\pm0.04\,\rm{eV} obtained. The first observation of n-on-n sensor type inversion at the LHC has been made, occurring at a fluence of around 15×10<sup>1215 \times 10 <sup>{12} of 1 MeV neq1\,\rm{MeV\,n_{eq}}. The only n-on-p sensors in use at the LHC have also been studied. With an initial fluence of approximately 3×10<sup>12 1 MeV neq\rm{3 \times 10<sup>{12}\,1\,MeV\,n_{eq}}, a decrease in the Effective Depletion Voltage (EDV) of around 25\,V is observed, attributed to oxygen induced removal of boron interstitial sites. Following this initial decrease, the EDV increases at a comparable rate to the type inverted n-on-n type sensors, with rates of (1.43±0.16)×10<sup>−12 V</sup>/ 1 MeV neq(1.43\pm 0.16) \times 10 <sup>{-12}\,\rm{V}</sup> / \, 1 \, \rm{MeV\,n_{eq}} and (1.35±0.25)×10<sup>−12 V</sup>/ 1 MeV neq(1.35\pm 0.25) \times 10 <sup>{-12}\,\rm{V}</sup> / \, 1 \, \rm{MeV\,n_{eq}} measured for n-on-p and n-on-n type sensors, respectively. A reduction in the charge collection efficiency due to an unexpected effect involving the second metal layer readout lines is observed.

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