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Characterization of a novel diamond-based microdosimeter prototype for radioprotection applications in space environments

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posted on 2024-11-16, 08:13 authored by Jeremy DavisJeremy Davis, Kumaravelu Ganesan, Andrew D C Alves, Susanna GuatelliSusanna Guatelli, Marco PetaseccaMarco Petasecca, Jayde Livingstone, Michael LerchMichael Lerch, Dale ProkopovichDale Prokopovich, Mark Reinhard, Rainer M Siegele, Steven Prawer, David Jamieson, Zdenka Kuncic, Vincent L Pisacane, John F Dicello, James Ziegler, Marco Zaider, Anatoly RozenfeldAnatoly Rozenfeld
This paper is dedicated to the characterization of a novel diamond microdosimeter prototype with 3D sensitive volumes produced by high energy boron implantation. Diamond has been chosen in order to further improve solid state based microdosimeter in terms of radiation hardness and tissue equivalency. IBIC measurements were undertaken to determine the charge collection efficiency map of the device. It was demonstrated that the proposed ion implantation technology allows for the formation of an array of well defined 3D SVs. A Geant4 application was developed to explain the effect of Al electrode thickness on observed anomaly in deposited energy. Specifics of the results and an update on the current status of the project is presented.

Funding

Development of innovative radiation detectors and computational techniques for improving quality of life

Australian Research Council

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Citation

Davis, J. A., Ganesan, K., Alves, A. D. C., Guatelli, S., Petasecca, M., Livingstone, J., Lerch, M. L. F., Prokopovich, D. A., Reinhard, M. I., Siegele, R. M., Prawer, S., Jamieson, D., Kuncic, Z., Pisacane, V. L., Dicello, J. F., Ziegler, J., Zaider, M. & Rozenfeld, A. B. (2012). Characterization of a novel diamond-based microdosimeter prototype for radioprotection applications in space environments. IEEE Transactions on Nuclear Science, 59 (6), 3110-3116.

Journal title

IEEE Transactions on Nuclear Science

Volume

59

Issue

6

Pagination

3110-3116

Language

English

RIS ID

73893

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