Hostname: page-component-8448b6f56d-cfpbc Total loading time: 0 Render date: 2024-04-23T13:08:44.864Z Has data issue: false hasContentIssue false

Probing The Transient Response To Improve The Stability Of Diamond Devices Under Pulsed Periodic Excitation

Published online by Cambridge University Press:  01 February 2011

Philippe Bergonzo
Affiliation:
philippe.bergonzo@cea.fr, Laboratoire Capteurs Diamant, CEA, LIST,, Centre d'Etudes de Saclay, Gif-sur-Yvette, 91191, France, +33169084053, +33169087679
Hassen Hamrita
Affiliation:
hassen.hamrita@cea.fr, Laboratoire Capteurs Diamant, CEA, LIST,, Centre d'Etudes de Saclay, Gif-sur-Yvette, 91191, France
Dominique Tromson
Affiliation:
dominique.tromson@cea.fr, Laboratoire Capteurs Diamant, CEA, LIST,, Centre d'Etudes de Saclay, Gif-sur-Yvette, 91191, France
Caroline Descamps
Affiliation:
caroline.descamps@cea.fr, Laboratoire Capteurs Diamant, CEA, LIST,, Centre d'Etudes de Saclay, Gif-sur-Yvette, 91191, France
Christine Mer
Affiliation:
christine.mer@cea.fr, Laboratoire Capteurs Diamant, CEA, LIST,, Centre d'Etudes de Saclay, Gif-sur-Yvette, 91191, France
Milos Nesladek
Affiliation:
milos.nesladek@cea.fr, Laboratoire Capteurs Diamant, CEA, LIST,, Centre d'Etudes de Saclay, Gif-sur-Yvette, 91191, France
Get access

Abstract

CVD diamond combines attractive properties for the fabrication of detection devices operating in specific environments. One problem that remains critical for device stability is the presence of defect levels that alter the detection performances, and the detection characteristics often appear as they are very depending on time, temperature, and history of the preceding irradiations.

One issue we have proposed is to adapt one technique that is commonly used for time of flight spectroscopy in order to maintain a uniform electric field in the probed device, and based on the synchronisation of the device bias with the period of the excitation source. This can be applied to several types of detection applications, as long as we can rely on periodical triggering in order to synchronise the device polarisation. We apply it here to a LINAC electron accelerator used for photon pulse generation at the frequency of 25Hz. The result is a remarkable improvement of the performance of a polycrystalline diamond detector that exhibits a particularly defective response when used in the steady state excitation, to reach that of a perfectly stable and reproducible device response in the pulsed mode. We claim this method to be applicable to several types of excitations and particularly to present a high interest for monitoring accelerator sources, e.g. for medical dosimetry applications.

Type
Research Article
Copyright
Copyright © Materials Research Society 2008

Access options

Get access to the full version of this content by using one of the access options below. (Log in options will check for institutional or personal access. Content may require purchase if you do not have access.)

References

[1] “Diamond-based Radiation and Photon Detectors”, Bergonzo, P., Jackman, R.B. Semiconductors & Semimetals, Vol. 77 –Thin Film Diamond–Part II, 325-377 (2003), Eds. Nebel, C.E. & Ristein, J., Academic Press, ISBN 0-12-752186-0, pp.197303.Google Scholar
[2] Souw, E-K., Meilunas, R.J., Nucl. Inst. Meth. A 400 (1997) 69.Google Scholar
[3] Tromson, D., Brambilla, A., Bergonzo, P., Mas, A., Hordequin, C., Mer, C., Foulon, F., J. App. Phys 90, (2001)1608–11Google Scholar
[4] Morse, J., Salomé, M., Barrett, R. Industrial Diamond Review 66 (3), (2006) 3640 Google Scholar
[5] Pernegger, H. et al. J Appl. Phys, Vol 97(7) (2005) 73704 10.1063/1.1863417Google Scholar
[6] Pomorski, M., Berdermann, E., Caragheorgheopol, A., Ciobanu, M., Kiš, M., Martemiyanov, A., Nebel, C.E., Moritz, P., Physica Status Solidi (A) 203 (12) (2006) pp. 31523160 Google Scholar
[7] Tranchant, & al. Diam and Rel Mat in pressGoogle Scholar
[8] Tranchant, N. & al. Physica Status Solidi (a) 204 (2007) 30233029 Google Scholar
[9] Tallaire, A. & al. Diam and Rel Mat 15 (2006) 17001707 10.1016/j.diamond.2006.02.005Google Scholar
[10] Tromson, D., Bergonzo, P., Brambilla, A., Foulon, F., J. Appl. Phys. 87 (2000) 3360 Google Scholar
[11] Descamps, C., Tromson, D., Guerrero, M.J., Mer, C., Rzepka, E., Nesladek, M., Bergonzo, P., Diam and Rel Mat 15 (4-8), (2006) 833837 Google Scholar
[12] Benabdesselam, M., Iacconi, P., Butler, J.E., Nigoul, J.M., Diam & Rel Mat 12, (2003) 1750 Google Scholar
[13] Gaudin, O., Watson, S., Lansley, S. P., Jin, L. Hui, Whitfield, M. D. & Jackman, R. B.. Diamond and Related Materials. 8 (1999) 886–91Google Scholar
[14] Gonon, P., Prawer, S., Jamieson, D., Applied Physics Letters (1997) 70 (22), 29962998 Google Scholar
[15] Trajkov, E., Prawer, S., Spizzirri, P., Diam and Rel Mat 12 (2003) 17381743 Google Scholar
[16] Guerrero, M.J., Tromson, D., Descamps, C., Bergonzo, P., Diam & Rel Mat 15 (2006) 811 Google Scholar
[17] Manfredotti, C., Vittone, E., Paolini, C., Olivero, P., Giudice, A., Diam & Rel Mat 12 (2003) 662 Google Scholar
[18] Tromson, D., Brambilla, A., Bergonzo, P., Mas, A., Hordequin, C., Mer, C. & Foulon, F. Journal of Applied Physics 90, 1608–11 (2001).Google Scholar
[19] Descamps, C., Tromson, D., Mer, C., Nesládek, M., Bergonzo, P., Benabdesselam, M., Physica Status Solidi (A) 203 (12), (2006) 31613166 10.1002/pssa.200671115Google Scholar
[20] Hamrita, H., Bergonzo, P., patent pending, (2007)Google Scholar