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Effect of Cd-annealing of the IR transmittance of CdTe wafers grown by the Bridgman methodKIM, W. J; PARK, M. J; KIM, S. U et al.Journal of crystal growth. 1990, Vol 104, Num 3, pp 677-682, issn 0022-0248Article

THREE-ZONE BRIDGMAN-STOCKBARGER CRYSTAL GROWTH FURNACEMIKKELSEN JC JR.1980; REV. SCI. INSTRUM.; ISSN 0034-6748; USA; DA. 1980; VOL. 51; NO 11; PP. 1564-1566; BIBL. 9 REF.Article

The horizontal Bridgman methodRUDOLPH, P; KIESSLING, F. M.Crystal research and technology (1979). 1988, Vol 23, Num 10-11, pp 1207-1224, issn 0232-1300Article

Measuring Grüneisen parameter of iron and copper by an improved high pressure-jump methodHUANG, D. H; LIU, X. R; SU, L et al.Journal of physics. D, Applied physics (Print). 2007, Vol 40, Num 17, pp 5327-5330, issn 0022-3727, 4 p.Article

Experimental study of a vertical bridgman configurationSARDA, A; DELAUNAY, D.Experimental heat transfer. 1993, Vol 6, Num 4, pp 345-365, issn 0891-6152Article

Programming the crystallization rate along a Bridgman test tubeCABRIC, B; ARNAUT, S; CVJETKOVIC, V et al.Crystal research and technology (1979). 1997, Vol 32, Num 3, issn 0232-1300, p. 485Article

Bi2Sr2CaCu2Oy single crystal growth in Bridgman-Stockbarger method using different oxygen partial pressureECHIZEN, Y; TANAKA, H; ADACHI, S et al.Physica. C. Superconductivity. 2006, Vol 445-48, pp 455-458, issn 0921-4534, 4 p.Conference Paper

Crystal growth of orthorhombic BaSi2 by the vertical Bridgman methodKISHINO, S; IIDA, T; KUJI, T et al.Thin solid films. 2004, Vol 461, Num 1, pp 90-93, issn 0040-6090, 4 p.Conference Paper

Growth of Bi-2212 single crystals by a horizontal Bridgman method using different oxygen pressureFUJIWARA, M; MAKINO, T; NAKABAYASHI, T et al.Physica. C. Superconductivity. 2009, Vol 469, Num 15-20, pp 1178-1181, issn 0921-4534, 4 p.Conference Paper

Growth of Bi-2212 single crystals by a vertical bridgman method using large cruciblesECHIZEN, Y; TANAKA, H; KISHIDA, S et al.Physica. C. Superconductivity. 2005, Vol 426-31, pp 583-587, issn 0921-4534, 5 p., 1Conference Paper

Segregation control of vertical Bridgman growth of Ga-doped germanium crystals by accelerated crucible rotation : ACRT versus angular vibrationWANG, L. C; LIU, Y. C; YU, W. C et al.Journal of crystal growth. 2009, Vol 311, Num 3, pp 684-687, issn 0022-0248, 4 p.Conference Paper

Global Simulating the Detached Solidification Growth of CdZnTe Under Microgravity and GravityLAN PENG; ZHANG, Quan-Zhuang; FAN, Ju-Yan et al.Journal of superconductivity and novel magnetism. 2010, Vol 23, Num 6, pp 1205-1209, issn 1557-1939, 5 p.Conference Paper

Near-infrared broadband luminescence of Yb-doped PbCIF crystalsQINGGUO WANG; LIANGBI SU; HONGJUN LI et al.Journal of luminescence. 2012, Vol 132, Num 9, pp 2224-2227, issn 0022-2313, 4 p.Article

Thermoelectric properties of Bi2SexTe3―x prepared by Bridgman methodKEAWPRAK, N; LAO-UBOL, S; EAMCHOTCHAWALI, C et al.Journal of alloys and compounds. 2011, Vol 509, Num 38, pp 9296-9301, issn 0925-8388, 6 p.Article

Growth and characterization of KNbO3 single crystal by vertical bridgman methodKUDO, Kenichi; KAKIUCHI, Kenji; MIZUTANI, Kouji et al.Ferroelectrics (Print). 2005, Vol 323, pp 157-164, issn 0015-0193, 8 p.Conference Paper

Boundary conditions for radiative heat transfer in monocrystal growth processes in ampules : 2. A semitransparent quartz ampule, Bridgman's method, and the traveling-heater methodFRYAZINOV, I. V.Computational mathematics and mathematical physics. 1997, Vol 37, Num 11, pp 1341-1355, issn 0965-5425Article

A space-qualified cartridge for crystal growth experiments on Ge-SiMÖLLER, U; HELMERS, L; BAHR, G et al.Microgravity, science and technology. 1994, Vol 7, Num 1, pp 68-69, issn 0938-0108Article

A new Bridgman process for single crystal growth based on control of distributed parameter systemITO, Y; KATOH, N.Kagaku kōgaku ronbunshū. 1994, Vol 20, Num 2, pp 288-292, issn 0386-216XArticle

The growth of single crystals of KFeS2 and RbFeS2 by the Bridgman methodARGUELLO, Z; TORRIANI, I; FURTADO, N. C et al.Journal of crystal growth. 1984, Vol 67, Num 3, pp 483-485, issn 0022-0248Article

A technique for measuring the heat transfer coefficient inside a Bridgman furnaceROSCH, W; JESSER, W; DEBNAM, W et al.Journal of crystal growth. 1993, Vol 128, Num 1-4, pp 1187-1192, issn 0022-0248, 2Conference Paper

A method to increase the homogeneous section of monocrystalsLI QINGCHUN; XU DAMING.Journal of crystal growth. 1987, Vol 82, Num 3, pp 443-449, issn 0022-0248Article

Growth of crystalline calcite from a CaCO3-CaO meltBAKER, E. H; NAZARETH, F. J.Journal of crystal growth. 1985, Vol 71, Num 1, pp 197-202, issn 0022-0248Article

Modélisation d'une installation de solidification Bridgman avec chauffage par induction = Modeling of a Bridgman solidification installation with induction heatingBORNIER, L; BIROCHEAU, J.Journal of crystal growth. 1985, Vol 71, Num 3, pp 566-578, issn 0022-0248Article

Factors affecting isotherm shape during Bridgman crystal growthJONES, C. L; CAPPER, P; GOSNEY, J. J et al.Journal of crystal growth. 1984, Vol 69, Num 2-3, pp 281-290, issn 0022-0248Article

Heat transfer measurements in the Bridgman configurationROSCH, W; FRIPP, A; DEBNAM, W et al.Journal of crystal growth. 1994, Vol 137, Num 1-2, pp 54-58, issn 0022-0248Conference Paper

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