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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
Main Authors: Matthiesen, D.H., Wargo, M.J., Motakef, S., Carlson, D.J., Nakos, J.S., Witt, A.F.
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cited_by cdi_FETCH-LOGICAL-c300t-1bd3cac78812475d543d55dce0987d73a0e8237ae50560ead154992fc2334ec53
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container_title Journal of crystal growth
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creator Matthiesen, D.H.
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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
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ispartof Journal of crystal growth, 1987-11, Vol.85 (3), p.557-560
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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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