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Experimental Progress in the Direct Detection of Dark Matter

Published online by Cambridge University Press:  30 March 2016

Nigel J.T. Smith*
Affiliation:
Particle Physics Department, CCLRC Rutherford Appleton Laboratory, Chilton, Didcot, Oxon, OX11 0QX, U.K.

Abstract

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Several experimental approaches are being utilised for the direct detection of the hypothetical weakly interacting massive particle which may constitute the majority of the non-luminous component of the Galaxy. These experimental techniques exploit the coherent recoil of target nuclei during an interaction and include thermal, ionisation, scintillation and tracking detectors. The challenges associated with this detection, the techniques employed and the current status of these searches are reviewed.

Type
I. Joint Discussions
Copyright
Copyright © Astronomical Society of Pacific 2005

References

Barton, J. C. et al., 2003, Workshop on Identification of Dark Matter (York) 302 Google Scholar
Benoit, A. et al., 2002, Phys. Lett B, 545, 43 Google Scholar
Bernabei, R. et al., 2000, BernabeiPhys. Lett. B, 480, 23 Google Scholar
Ellis, J. R. et al., 2003, Phys. Lett B, 565, 176 CrossRefGoogle Scholar
Morales, A., 2003, Nucl. Phys. Proc. Suppl. 114, 39 CrossRefGoogle Scholar
Schnee, R. et al., 1998, Phys. Rep. 307, 283 Google Scholar
Smith, P. F., Lewin, J.D. 1990, Phys. Rep. 187, 203 Google Scholar
Smith, N. J. T. et al., 2002, Heidelberg Conference (Cape Town) 499 Google Scholar
Spergel, D. N. et al., 2003, ApJS, 148, 175 Google Scholar