Experimental investigation on the effect of crystal and crucible rotation on thermocapillary convection in a Czochralski configuration
Author:
Funder
National Natural Science Foundation of China
Publisher
Elsevier BV
Subject
General Engineering,Condensed Matter Physics
Reference38 articles.
1. Numerical simulations of bulk crystal growth on different scales: silicon and GeSi;Miller;Phys. Status Solidi (b),2010
2. Study of melt convection and interface shape during sapphire crystal growth by Czochralski method;Fang;Int. J. Heat Mass Transf.,2012
3. Convection in a Czochralski crucible–Part 2: rotating crystal;Hintz;J. Cryst. Growth,2001
4. Effect of crystal and crucible rotations on the interface shape of Czochralski grown silicon single crystals;Asadi Noghabi;J. Cryst. Growth,2011
5. Flow pattern transition driven by the combined Marangoni effect and rotation of crucible and crystal in a Czochralski configuration;Wu;Int. J. Therm. Sci.,2014
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2. Multiple instabilities of thermocapillary flow in a cylindrical pool with a rotating disk on the free surface;Physical Review E;2022-05-03
3. Instabilities of thermocapillary-buoyant-Coriolis flow of medium Prandtl fluid in a slowly rotating annular pool;International Communications in Heat and Mass Transfer;2022-01
4. Effect of crystal rotation on the instability of thermocapillary–buoyancy convection in a Czochralski model;Physics of Fluids;2021-10
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