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A direct observation of the trapping of deuterium ions at a grain boundary in tungsten
1.J. A. Panitz, J. Vac. Sci. Technol. 14, 502 (1977).
2.G. L. Kellogg, Bull. Am. Phys. Soc. 24, 272 (1979).
3.J. A. Panitz, Prog. Surf. Sci. 8, 219 (1978).
4.See, for example: E. W. Müller and T. T. Tsong, Field Ion Microscopy, Principles and Applications (Elsiever, Amsterdam, 1969).
5.G. L. Kellogg and J. A. Panitz, Appl. Surf. Sci. 3, 13 (1979).
6.G. L. Kellogg and R. E. Clausing, Appl. Phys. Lett. 35, 109 (1979).
7.G. L. Kellogg and J. A. Panitz, J. Nucl. Mater. 85 & 86, 951 (1979).
8.R. Frauenfelder, J. Vac. Sci. Technol. 6, 388 (1969).
9.W. R. Wampler, S. T. Picraux, S. A. Cohen, H. F. Dylla, G. M. McCracken, S. M. Rossnagle, and C. W. Magee, J. Nucl. Mater. 85 & 86, 983 (1979).
10.The characteristics of this system using hydrogen and deuterium are described by D. M. Sharp, J. K. G. Panitz, and D. M. Mattox, J. Vac. Sci. Technol. 16, 1879 (1979).
11.H. R. Kaufman, TN D‐585 NASA, 1961 (unpublished).
12.C. W. Magee, RCA Laboratories, Princeton, New Jersey, carried out the SIMS analyses, as described by C. W. Magee, in Proceedings of the Analysis of Hydrogen in Solids Workshop, Sandia National Laboratories 23–25 January, 1979, p. 43 (unpublished).
13.W. R. Wampler, Sandia National Laboratories, Albuquerque, New Mexico, carried out the Nuclear Reaction analyses as described by L. C. Feldman and S. T. Picraux, in Ion Beam Handbook for Materials Analysis, edited by J. W. Mayer and E. Rimini (Academic, New York, 1977), Chap. 4.
14.The grain size in the polycrystalline tungsten samples was determined by M. E. McAllaster, Sandia National Laboratories, using optical metallography analysis.
15.H. K. Birnbaum (private communication).
16.G. Staudenmaier, J. Roth, R. Behrisch, J. Bohdansky, W. Eckstein, P. Staib, and S. Matteson, J. Nucl. Mater. 84, 149 (1979).
17.G. L. Kellogg and T. Tsong, J. Appl. Phys. 51, 1184 (1980).
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