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A New High Dynamic Range X-ray Detector

Published online by Cambridge University Press:  06 March 2019

S. Cockerton
Affiliation:
Bede Scientific Instruments, Lindsey Park, BowburnDurham DH6 5PF, U.K. now with: S. C. Scientific, 131 Kenton Lane, KentonNewcastie-u-Tyne NE3 3QB, U.K.
B. K. Tanner
Affiliation:
Bede Scientific Instruments, Lindsey Park, BowburnDurham DH6 5PF, U.K. Also at: Department of Physics, University of Durham, U.K.
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Abstract

We describe the design and application to X-ray diffractometry of a new X-ray detector based on a fast, non-hygroscopic, rare earth scintillator. The detector has a background count of 0.1 c.p.s. and a peak count rate in excess of 3 x 106 c.p.s. A good fit is found to the theoretical curve of measured against real count rate for a paralysable detector with 160 ns dead-time.

Type
IV. New Developments in X-Ray Sources, Instrumentation and Techniques
Copyright
Copyright © International Centre for Diffraction Data 1994

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References

1. Kleinknecht, K., Detectors for Particle Radiation (Cambridge University Press, 1985).Google Scholar
2. Cockerton, S., Tanner, B. K. and Derbyshire, G., Nucl. Inst. Meth, (in press).Google Scholar
3. Loxley, N., Cockerton, S. and Tanner, B. K., Adv. X-ray Anal. 37 (1994).Google Scholar
4. Knoll, G. F., Radiation Detection and Measurement (John Wiley, New York, 1979).Google Scholar
5. Beaman, D. R., Isai, J. A., Birnbaum, H. K. and Lewis, R., J. Phys. E: Sci. Inst 1 (1972) 767.Google Scholar
6. Williamson, J. A., Kendall-Tobias, M. W., Buhl, M. and Selbert, M., Anal. Chem. 60 (1988) 2195.Google Scholar