Flow and segregation control by accelerated rotation for vertical Bridgman growth of cadmium zinc telluride: ACRT versus vibration
Author:
Publisher
Elsevier BV
Subject
Materials Chemistry,Inorganic Chemistry,Condensed Matter Physics
Reference17 articles.
1. Flux growth of large crystals by accelerated crucible-rotation technique
2. Application of the accelerated crucible rotation technique to the Bridgman growth of CdxHg1− xTe: Simulations and crystal growth
3. Effect of ACRT rotation parameters on Bridgman grown CdxHg1−xTe crystals
4. Interfaces and flow regimes in ACRT grown CdxHg1−xTe crystals
5. P. Capper, J.J. Gosney, UK Patent 2098879A, 1982.
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1. Numerical study of ACRT in the THM growth of CdZnTe crystals;Journal of Crystal Growth;2021-09
2. Numerical simulation of the multicomponent mass transfer during Bridgman growth of CdZnTe crystal using Maxwell-Stefan diffusion model;Journal of Wuhan University of Technology-Mater. Sci. Ed.;2017-04
3. The Effects of ACRT on the Growth of ZnTe Crystal by the Temperature Gradient Solution Growth Technique;Crystals;2017-03-13
4. Numerical investigation of heat and mass transfer during vertical Bridgman crystal growth under rotational vibrations;Journal of Crystal Growth;2014-01
5. The prospects for traveling magnetic fields to affect interface shape in the vertical gradient freeze growth of cadmium zinc telluride;Journal of Crystal Growth;2013-02
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