Threshold bounce -- occupancy-dependent modulation of the discriminating threshold in silicon detectors

Fuente: arXiv
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Main Authors: Basso, M. J., Buchanan, E., Gallop, B. J., John, J. J., Kaplon, J., Keener, P. T., Phillips, P. W., Poley, L., Sawyer, C. A., Sperlich, D., Warren, M.
Format: Preprint
Published: 2024
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author Basso, M. J.
Buchanan, E.
Gallop, B. J.
John, J. J.
Kaplon, J.
Keener, P. T.
Phillips, P. W.
Poley, L.
Sawyer, C. A.
Sperlich, D.
Warren, M.
author_facet Basso, M. J.
Buchanan, E.
Gallop, B. J.
John, J. J.
Kaplon, J.
Keener, P. T.
Phillips, P. W.
Poley, L.
Sawyer, C. A.
Sperlich, D.
Warren, M.
contents The front-end electronics of silicon detectors are typically designed to ensure optimal noise performance for the expected input charge. A combination of preamplifiers and shaper circuits result in a nontrivial response of the front-end to injected charge, and the magnitude of the response may be sizeable in readout windows subsequent to that in which the charge was initially injected. The modulation of the discriminator threshold due to the superposition of the front-end response across multiple readout windows is coined "threshold bounce". In this paper, we report a measurement of threshold bounce using silicon modules built for the Phase-II Upgrade of the ATLAS detector at the Large Hadron Collider. These modules utilize ATLAS Binary Chips for their hit readout. The measurement was performed using a micro-focused 15 keV photon beam at the Diamond Light Source synchrotron. The effect of the choice of photon flux and discriminator threshold on the magnitude of the threshold bounce is studied. A Monte Carlo simulation which accounts for the front-end behaviour of the silicon modules is developed, and its predicted hit efficiency is found to be in good agreement with the measured hit efficiency.
format Preprint
id arxiv_https___arxiv_org_abs_2406_10747
institution arXiv
publishDate 2024
record_format arxiv
spellingShingle Threshold bounce -- occupancy-dependent modulation of the discriminating threshold in silicon detectors
Basso, M. J.
Buchanan, E.
Gallop, B. J.
John, J. J.
Kaplon, J.
Keener, P. T.
Phillips, P. W.
Poley, L.
Sawyer, C. A.
Sperlich, D.
Warren, M.
Instrumentation and Detectors
The front-end electronics of silicon detectors are typically designed to ensure optimal noise performance for the expected input charge. A combination of preamplifiers and shaper circuits result in a nontrivial response of the front-end to injected charge, and the magnitude of the response may be sizeable in readout windows subsequent to that in which the charge was initially injected. The modulation of the discriminator threshold due to the superposition of the front-end response across multiple readout windows is coined "threshold bounce". In this paper, we report a measurement of threshold bounce using silicon modules built for the Phase-II Upgrade of the ATLAS detector at the Large Hadron Collider. These modules utilize ATLAS Binary Chips for their hit readout. The measurement was performed using a micro-focused 15 keV photon beam at the Diamond Light Source synchrotron. The effect of the choice of photon flux and discriminator threshold on the magnitude of the threshold bounce is studied. A Monte Carlo simulation which accounts for the front-end behaviour of the silicon modules is developed, and its predicted hit efficiency is found to be in good agreement with the measured hit efficiency.
title Threshold bounce -- occupancy-dependent modulation of the discriminating threshold in silicon detectors
topic Instrumentation and Detectors
url https://arxiv.org/abs/2406.10747