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Some effects of crystal rotation on large-scale Czochralski oxide growth: analysis via a hydrodynamic thermal-capillary model
J. J. Derby
, Q. Xiao
Chemical Engineering and Materials Science
Research output
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Contribution to journal
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Article
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peer-review
38
Scopus citations
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Dive into the research topics of 'Some effects of crystal rotation on large-scale Czochralski oxide growth: analysis via a hydrodynamic thermal-capillary model'. Together they form a unique fingerprint.
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Engineering & Materials Science
Crystals
100%
Oxides
86%
Hydrodynamics
86%
Hot Temperature
48%
Heat transfer
28%
Crystal growth from melt
24%
Garnets
22%
Gadolinium
20%
Gallium
20%
Fluid mechanics
17%
Thermodynamic properties
13%
Finite element method
8%
Physics & Astronomy
hydrodynamics
76%
oxides
62%
crystals
48%
heat transfer
33%
gadolinium-gallium garnet
19%
fluid mechanics
17%
free boundaries
17%
menisci
16%
thermophysical properties
16%
newton
14%
crystal growth
13%
deflection
12%
finite element method
11%
Chemical Compounds
Hydrodynamics
95%
Oxide
54%
Heat Transfer
46%
Fluid Mechanics
23%
Czochralski Process
21%
Meniscus
19%
Thermodynamic Property
12%
Shape
9%
Flow
9%