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《12. Growth and Characterization of Technologically Important Oxide Single Crystals》.pdf
12 Growth and Characterization of
Technologically Important Oxide Single Crystals
Krishan Lal, R.V. Anantha Murthy, Ashutosh Choubey, and Niranjana Goswami
Crystal Growth and Characterization Section, National Physical Laboratory, Dr.
K. S. Krishnan Road, New Delhi-110012, India
12.1 Introduction
There is a wide variety of technologically important oxide single crystals, which
find applications in diverse fields. These are employed as laser hosts, in nonlinear
optical devices, optical wave guides and other components in optical communica-
tions, in memories, and numerous other applications. Many of the oxide crystals
had been extensively used as substrates to prepare high Tc superconductors, blue
light emitting lasers, magnetic bubble memories, and so forth. Lithium niobate
[1–2], cadmium tungstate, sapphire, ruby, garnets [3], lithium tantalate, lead mo-
lybdate [4], bismuth germanate, potassium niobate, barium titanate [5], bismuth
silicate [6], and others are being extensively used for making important devices.
We shall discuss recent advances in growth and structural characterization of
lithium niobate and bismuth germanate (BGO) crystals.
Lithium niobate (LiNbO3) is an opto-electronic material. LiNbO3 crystals with
high degree of perfection, optical homogeneity, correct stoichiometry, and single
ferroelectric domain are required for fabrication of surface acoustic wave devices
(SAW), optical wave guides, photonic switches in telecommunication, as piezoe-
lectric materials in tomography, and as second harmonic generators (SHG) [1].
LiNbO3 single crystals have large electro-optic coefficients and do not need appli-
cation of a high voltage. These crystals have received much attention as phase
conjugate wave generators and real-time read-write holograms using the photore-
fractive effect [7]. Generally, to improve properties, LiNbO3
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