Measuring the ATLAS ITk Pixel Detector Material via Multiple Scattering of Positrons at the CERN PS
arXiv:2412.04686 · doi:10.1140/epjc/s10052-025-14092-2
Abstract
The ITk is a new silicon tracker for the ATLAS experiment designed to increase detector resolution, readout capacity, and radiation hardness, in preparation for the larger number of simultaneous proton-proton interactions at the High Luminosity LHC. This paper presents the first direct measurement of the material budget of an ATLAS ITk pixel module, performed at a testbeam at the CERN Proton Synchrotron via the multiple scattering of low energy positrons within the module volume. Using a four plane telescope of thin monolithic pixel detectors from the MALTA collaboration, scattering datasets were recorded at a beam energy of . Kink angle distributions were extracted from tracks derived with and without information from the ITk pixel module, and were fit to extract the RMS scattering angle, which was converted to a fractional radiation length . The average across the module was measured as , which agrees within uncertainties with an estimate of derived from material component expectations.
12 pages, 12 figures