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Performance of Monocrystalline Diamond Radiation Detectors Fabricated Using TiW, Cr/Au and a Novel Ohmic DLCIPt/Au Electrical Contact.

Authors :
Galbiati, A.
Lynn, S.
Oliver, K.
Schirru, F.
Nowak, T.
Marczewska, B.
Dueñas, J. A.
Berjillos, R.
Martel, I.
Lavergne, L.
Source :
IEEE Transactions on Nuclear Science; Aug2009 Part 1 of 3, Vol. 56 Issue 4, p1863-1874, 12p, 1 Chart, 13 Graphs
Publication Year :
2009

Abstract

We investigated the performance of synthetic high purity monocrystalline diamond radiation detectors fabricated with TiW, Cr/Au and a novel metallization technique utilising diamond-like carbon tunnelling junction and PtJAu as electrical contacts. The investigation was carried out under irradiation with <superscript>60</superscript>Co γ-rays, <superscript>90</superscript>Sr electrons and <superscript>241</superscript>Am α-particles. The experimental results with respect to I-V dark current levels, irradiation photocurrent, signal-to-noise ratio and time response have been compared and discussed. Results show an ohmic behaviour of the DLC/Pt/Au contact, a charge collection efficiency of 100% at an applied electric field of 0.377 V/μm for all electrical contacts (under <superscript>90</superscript>Sr electrons irradiation) at a correspondent dark current value of less than a picoAmpere. The single crystal CVD DLC/Pt/Au diamond radiation detector reported here shows spectroscopic energy resolution of 1.1% at an applied voltage of +450 volts (0.9 V/μm) under 5.5 MeV alpha particle irradiation. No 'memory' or 'pumping' effect was observed for the DLC/Pt/Au contact at positive bias; the signal was also stable (fluctuations below 0.5%) and reproducible under <superscript>60</superscript>Co~ irradiation, with a signal-to-noise ratio > 10000:1 and a linearity in the, dose rate response. [ABSTRACT FROM AUTHOR]

Details

Language :
English
ISSN :
00189499
Volume :
56
Issue :
4
Database :
Complementary Index
Journal :
IEEE Transactions on Nuclear Science
Publication Type :
Academic Journal
Accession number :
44004345
Full Text :
https://doi.org/10.1109/TNS.2009.2020428