1 |
Modification of growth interface of CdZnTe crystals in THM process by ACRT Zhou BR, Jie WQ, Wang T, Yin LY, Yang F, Zhang BB, Xi SZ, Dong JP Journal of Crystal Growth, 483, 281, 2018 |
2 |
Numerical study of liquid phase diffusion growth of SiGe subjected to accelerated crucible rotation Sekhon M, Lent B, Dost S Journal of Crystal Growth, 438, 90, 2016 |
3 |
Effect of accelerated crucible rotation on the segregation of impurities in vertical Bridgman growth of multi-crystalline silicon Bellmann MP, Meese EA, Arnberg L Journal of Crystal Growth, 318(1), 239, 2011 |
4 |
Estimation of growth rate in unidirectionally solidified multicrystalline silicon by the growth-induced striation method Ganesh RB, Matsuo H, Kawamura T, Kangawa Y, Arafune K, Ohshita Y, Yamaguchi M, Kakimoto K Journal of Crystal Growth, 310(11), 2697, 2008 |
5 |
Theoretical and technological solutions of the striation problem Scheel HJ Journal of Crystal Growth, 287(2), 214, 2006 |
6 |
Bulk growth of cadmium mercury telluride (CMT) using the Bridgman/accelerated crucible rotation technique (ACRT) Capper P, Maxey C, Butler C, Grist M, Price J Journal of Crystal Growth, 275(1-2), 259, 2005 |
7 |
Numerical analysis of continuous charge of lithium niobate in a double-crucible Czochralski system using the accelerated crucible rotation technique Kitashima T, Liu LJ, Kitamura K, Kakimoto K Journal of Crystal Growth, 266(1-3), 109, 2004 |
8 |
Development of model-based control for Bridgman crystal growth Sonda P, Yeckel A, Daoutidis P, Derby JJ Journal of Crystal Growth, 266(1-3), 182, 2004 |
9 |
Effects of shape of an inner crucible on convection of lithium niobate melt in a double-crucible Czochralski process using the accelerated crucible rotation technique Kitashima T, Liu LJ, Kitamura K, Kakimoto K Journal of Crystal Growth, 267(3-4), 574, 2004 |
10 |
Proustite single-crystal growth by the Bridgman-Stockbarger method using ACRT Distanov VE, Nenashev BG, Kirdyashkin AG, Serboulenko MG Journal of Crystal Growth, 235(1-4), 457, 2002 |