Radiation-induced charge collection in infrared detector arrays

A modeling approach is described for predicting charge collection in space-based infrared detector arrays due to ionizing particle radiation. The modeling uses a combination of analytical and Monte Carlo techniques to capture the essential features of energetic ion-induced charge collection to detec...

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Veröffentlicht in:IEEE transactions on nuclear science 2002-12, Vol.49 (6), p.2822-2829
Hauptverfasser: Pickel, J.C., Reed, R.A., Ladbury, R., Rauscher, B., Marshall, P.W., Jordan, T.M., Fodness, B., Gee, G.
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container_end_page 2829
container_issue 6
container_start_page 2822
container_title IEEE transactions on nuclear science
container_volume 49
creator Pickel, J.C.
Reed, R.A.
Ladbury, R.
Rauscher, B.
Marshall, P.W.
Jordan, T.M.
Fodness, B.
Gee, G.
description A modeling approach is described for predicting charge collection in space-based infrared detector arrays due to ionizing particle radiation. The modeling uses a combination of analytical and Monte Carlo techniques to capture the essential features of energetic ion-induced charge collection to detector pixels in a two-dimensional array. The model addresses several aspects that are necessary for high-fidelity simulation of complex focal plane array structures including multiple layers, subregions within layers, variation of linear energy transfer with range, secondary electron scattering, free-field diffusion, and field-assisted diffusion. Example results are given and predictions are compared to experimental data.
doi_str_mv 10.1109/TNS.2002.805382
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source IEEE Electronic Library (IEL)
subjects Arrays
Charge
Collection
Computer simulation
Diffusion
Electrons
Energy exchange
Focal plane
Infrared detectors
Integrated circuit noise
Mathematical models
NASA
Noise level
Predictive models
Sensor arrays
Space technology
Working environment noise
title Radiation-induced charge collection in infrared detector arrays
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