High collection efficiency thin film diamond particle detectors

  • P. Bergonzo
  • , F. Foulon
  • , R. D. Marshall
  • , C. Jany
  • , A. Brambilla
  • , R. D. McKeag
  • , R. B. Jackman

    Research output: Contribution to journalConference articlepeer-review

    Abstract

    Diamond is a resilient material with rather extreme electronic properties. As such it is an interesting candidate for the fabrication of high performance solid state particle detectors. However, the commercially accessible form of diamond, grown by chemical vapour deposition (CVD) methods, is polycrystalline in nature and often displays rather poor electrical characteristics. This paper considers ways in which this material may be used to form alpha particle detectors with useful performance levels. One approach adopted has been to reduce the impurity levels within the feed-stock gases that are used to grow the diamond films. This has enabled significant improvements to be achieved in the mean carrier drift distance within the films leading to alpha detectors with up to 40% collection efficiencies. An alternative approach explored is the use of planar device geometries whereby charge collection is limited to the top surface of the diamond which comprises higher quality material than the bulk of the film. This has lead to collection efficiencies of 70%, the highest yet reported for polycrystalline CVD diamond based detectors. Techniques for improving the characteristics of these devices further are discussed.

    Original languageBritish English
    Pages (from-to)441-446
    Number of pages6
    JournalMaterials Research Society Symposium - Proceedings
    Volume487
    StatePublished - 1998
    EventProceedings of the 1998 MRS Fall Symposium - Boston, MA, USA
    Duration: 1 Dec 19975 Dec 1997

    Fingerprint

    Dive into the research topics of 'High collection efficiency thin film diamond particle detectors'. Together they form a unique fingerprint.

    Cite this