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Numerical simulations of SiGe crystal growth by the traveling liquidus-zone method in a microgravity environmentABE, K; SUMIOKA, S; SUGIOKA, K.-I et al.Journal of crystal growth. 2014, Vol 402, pp 71-77, issn 0022-0248, 7 p.Article
Simplified numerical approach for estimation of effective segregation coefficient at the melt/crystal interfacePROSTOMOLOTOV, A. I; VEREZUB, N. A; VOLOSHIN, A. E et al.Journal of crystal growth. 2014, Vol 401, pp 111-115, issn 0022-0248, 5 p.Conference Paper
Characterization of sodium chloride crystals grown in microgravityFONTANA, Pietro; SCHEFER, Jürg; PETTIT, Donald et al.Journal of crystal growth. 2011, Vol 324, Num 1, pp 207-211, issn 0022-0248, 5 p.Article
Growth of biocrystalline films of PVC catalase in space using artificial epitaxy (graphoepitaxy)GIVARGIZOV, Eugene; GREBENKO, Albina I; ZADOROZHNAYA, Ludmila A et al.Journal of crystal growth. 2008, Vol 310, Num 4, pp 847-852, issn 0022-0248, 6 p.Article
Numerical modeling of the semiconductor alloys solidification by using a baffle under microgravity and terrestrial conditionsSTELIAN, C.Journal of crystal growth. 2008, Vol 310, Num 7-9, pp 1552-1558, issn 0022-0248, 7 p.Article
Oscillatory thermocapillary convection in a liquid bridge: Part 2-Drop shaft experimentsSAKURAJ, Masato; OHISHI, Naoya; HIRATA, Akira et al.Journal of crystal growth. 2007, Vol 308, Num 2, pp 360-365, issn 0022-0248, 6 p.Article
Reproduction of chondrules from levitated, hypercooled meltsNAGASHIMA, K; TSUKAMOTO, K; SATOH, H et al.Journal of crystal growth. 2006, Vol 293, Num 1, pp 193-197, issn 0022-0248, 5 p.Article
Studies on crystal growth under microgravityHayakawa, Yasuhiro; Furukawa, Yoshinori.2005, isbn 81-308-0025-X, 1Vol, 186 p., isbn 81-308-0025-XBook
Morphological instability on an ice crystal growing in supercooled waterFURUKAWA, Yoshinori; YOKOYAMA, Etsuro; SHIMADA, Wataru et al.Studies on crystal growth under microgravity. 2005, pp 165-186, isbn 81-308-0025-X, 1Vol, 22 p.Book Chapter
Convection influence on mass transport in the traveling liquidus-zone methodADACHI, S; OGATA, Y; KOSHIKAWA, N et al.Journal of crystal growth. 2004, Vol 267, Num 3-4, pp 417-423, issn 0022-0248, 7 p.Article
Non-linear response of a liquid bridge to a sinusoidal acceleration under microgravityMARTINEZ, I; PERALES, J. M; MESEGUER, J et al.Experiments in fluids. 2004, Vol 37, Num 6, pp 775-781, issn 0723-4864, 7 p.Article
Recent developments in Liquid Phase Electroepitaxial growth of bulk crystals under magnetic field = Développements récents en cristallogénèse par Electro-Epitaxie en Phase Liquide (LPEE) sous l'effet d'un champ magnétiqueDOST, Sadik; LENT, Brian; SHEIBANI, Hamdi et al.Comptes rendus. Mécanique. 2004, Vol 332, Num 5-6, pp 413-428, issn 1631-0721, 16 p.Article
A one-dimensional model to predict the growth conditions of InxGa1-xAs alloy crystals grown by the traveling liquidus-zone methodNAKAMURA, Hirohiko; HANAUE, Yasuhiro; KATO, Hirokazu et al.Journal of crystal growth. 2003, Vol 258, Num 1-2, pp 49-57, issn 0022-0248, 9 p.Article
An emulation system for melting zone semiconductor single crystal growth in spaceCHAORONG LI; PEWEN GE; YUZHANG PANG et al.Crystal research and technology (1979). 2003, Vol 38, Num 7-8, pp 734-739, issn 0232-1300, 6 p.Article
Three-dimensional gravity-jitter induced melt flow and solidification in magnetic fieldsLI, K; LI, B. Q; DE GROH, H. C et al.Journal of thermophysics and heat transfer. 2003, Vol 17, Num 4, pp 498-508, issn 0887-8722, 11 p.Article
Usefulness of experiments with model fluid for thermocapillary convection: effect of Prandtl number on two-dimensional thermocapillary convectionZHONG ZENG; MIZUSEKI, Hiroshi; SHIMAMURA, Kiyoshi et al.Journal of crystal growth. 2002, Vol 234, Num 1, pp 272-278, issn 0022-0248Article
Drop experiments on crystallization of InGaSb semiconductorHAYAKAWA, Y; BALAKRISHNAN, K; DAO, Le H et al.Journal of crystal growth. 2002, Vol 237-39, pp 1831-1834, issn 0022-0248, 3Conference Paper
Features of mass transfer for the laminar melt flow along the interfaceBYKOVA, S. V; GOLYSHEV, V. D; GONIK, M. A et al.Journal of crystal growth. 2002, Vol 237-39, pp 1886-1891, issn 0022-0248, 3Conference Paper
The axial and radial segregation due to the thermo-convection, the decrease of the melt in the ampoule and the effect of the precrystallization-zone in the semiconductor crystals grown in a Bridgman Stockbarger system in a low gravity environmentMIHAILOVICI, Monica M; BALINT, Agneta M; BALINT, Stefan et al.Journal of crystal growth. 2002, Vol 237-39, pp 1752-1756, issn 0022-0248, 3Conference Paper
The influence of the soret effect on transient solidification of alloys in a horizontal Bridgman apparatusTIMCHENKO, V; BENNACER, R; LEONARDI, E et al.International heat transfer conference. 2002, pp 267-272, isbn 2-84299-308-X, 6 p.Conference Paper
Bridgman crystal growth of an alloy with thermosolutal convection under microgravity conditionsSIMPSON, James E; GARIMELLA, Suresh V; DE GROH, Henry C et al.Journal of heat transfer. 2001, Vol 123, Num 5, pp 990-998, issn 0022-1481Article
Directional cellular growth of succinonitrile-0.075 wt% acetone bulk samples. Part 2 : Analysis of cellular patternKAUERAUF, Bernd; ZIMMERMANN, Gerhard; REX, Stephan et al.Journal of crystal growth. 2001, Vol 223, Num 1-2, pp 277-284, issn 0022-0248Article
Distribution of Te in GaSb grown by Bridgman technique under microgravityNAKAMURA, T; NISHINAGA, T; GE, P et al.Journal of crystal growth. 2000, Vol 211, Num 1-4, pp 441-445, issn 0022-0248Conference Paper
Experimental measurement of temperature distribution across a loop-like heaterXINAN LIANG; WEIQING JIN; ZHILEI PAN et al.Progress in crystal growth and characterization of materials. 2000, Vol 40, Num 1-4, pp 301-307, issn 0960-8974Conference Paper
Axial solute transport during Bridgman growth of BiSbTe3-mixed crystals : a comparison of analytical and numerical resultsSEIFERT, W; REINSHAUS, P.Crystal research and technology (1979). 2000, Vol 35, Num 1, pp 5-18, issn 0232-1300Article