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词条 Micro-pulling-down
释义

  1. Crystal growth routine

  2. See also

  3. References

{{Crystallization}}

The micro-pulling-down (µ-PD) method is a crystal growth technique based on continuous transport of the melted substance through micro-channel(s) made in a crucible bottom. Continuous solidification of the melt is progressed on a liquid/solid interface positioned under the crucible. In a steady state, both the melt and the crystal are pulled-down with a constant (but generally different) velocity.

Many different types of crystal are grown by this technique, including Y3Al5O12, Si, Si-Ge, LiNbO3,

α-Al2O3, Y2O3, Sc2O3,

LiF, CaF2, BaF2, etc.[1][2]

Crystal growth routine

Standard routine procedure used in the growth of most of µ-PD crystals is well developed. The general stages of the growths include:

  • charging of the crucible with starting materials (mixture of powders),
  • heating of the crucible until starting materials in the crucible are completely melted,
  • upward displacement of the seed until its contact with the meniscus or crucible,
  • formation of the meniscus and partial melting of the seed top,
  • correction of the shape of the meniscus through appropriate adjustment of crucible temperature and position of the seed crystal,
  • crystal growth through pulling of the seed in downward direction,
  • separation of the as grown crystal from the meniscus,
  • and cooling of the system (including the crystal and the crucible) to room temperature

See also

  • Crystal growth
  • Czochralski process
  • Float-zone silicon
  • Flux method
  • Laser-heated pedestal growth
  • Shaping processes in crystal growth
  • Verneuil process
  • Lithium niobate
  • Sapphire
  • Scandium(III) oxide
  • Yttrium aluminium garnet

References

1. ^{{cite book|title=Shaped Crystals: Growth by Micro-Pulling-Down Technique |editors=T. Fukuda and V.I. Chani |publisher=Springer-Verlag |location=Berlin |year=2007|isbn=3-540-71294-1|url=https://books.google.com/books?id=Dc6PJEOvRv8C&printsec=frontcover|author1=Fukuda, Tsuguo|author2=Chani, Valery I}}
2. ^{{cite journal |title=Challenge and study for developing of novel single crystalline optical materials using micro-pulling-down method |first=A. |last=Yoshikawa |author2=Nikl, M. |author3=Boulon, G. |author4= Fukuda, T. |journal=Opt. Mater. |volume=30 |year=2007 |issue=1 |pages=6–10 |doi=10.1016/j.optmat.2006.10.030|bibcode = 2007OptMa..30....6Y }}
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4 : Chemical processes|Industrial processes|Semiconductor growth|Crystals

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