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Dopant segregation during vertical Bridgman-Stockbarger growth with melt stabilization by strong axial magnetic fields
Ga-doped germanium was grown in a vertical Bridgman-Stockbarger system with melt stabilization by axial magnetic fields of 30 kG. It was found that radial segregation of gallium is negligible and that the initial transient of axial macro-segregation is in apparent compliance with the theory of diffu...
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Published in: | Journal of crystal growth 1987-11, Vol.85 (3), p.557-560 |
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container_end_page | 560 |
container_issue | 3 |
container_start_page | 557 |
container_title | Journal of crystal growth |
container_volume | 85 |
creator | Matthiesen, D.H. Wargo, M.J. Motakef, S. Carlson, D.J. Nakos, J.S. Witt, A.F. |
description | Ga-doped germanium was grown in a vertical Bridgman-Stockbarger system with melt stabilization by axial magnetic fields of 30 kG. It was found that radial segregation of gallium is negligible and that the initial transient of axial macro-segregation is in apparent compliance with the theory of diffusion controlled plane front solidification. |
doi_str_mv | 10.1016/0022-0248(87)90492-1 |
format | article |
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ispartof | Journal of crystal growth, 1987-11, Vol.85 (3), p.557-560 |
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language | eng |
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source | Backfile Package - Materials Science [YMS]; Backfile Package - Physics General (Legacy) [YPA] |
subjects | Cross-disciplinary physics: materials science rheology Exact sciences and technology Growth from melts zone melting and refining Materials Processing Materials science Methods of crystal growth physics of crystal growth Physics |
title | Dopant segregation during vertical Bridgman-Stockbarger growth with melt stabilization by strong axial magnetic fields |
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