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Ferroelectric Material Lithium Niobate Crystal For Optical Communication

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Ferroelectric Material Lithium Niobate Crystal For Optical Communication

Ferroelectric Material Lithium Niobate Crystal For Optical Communication
Ferroelectric Material Lithium Niobate Crystal For Optical Communication Ferroelectric Material Lithium Niobate Crystal For Optical Communication Ferroelectric Material Lithium Niobate Crystal For Optical Communication

Large Image :  Ferroelectric Material Lithium Niobate Crystal For Optical Communication

Product Details:
Place of Origin: China
Brand Name: Crystro
Certification: SGS
Payment & Shipping Terms:
Minimum Order Quantity: 1 Piece
Price: Negotiable
Packaging Details: Transparent clean box
Delivery Time: 3-4 weeks
Payment Terms: T/T, Western Union, MoneyGram
Supply Ability: 1000 pcs per month
Detailed Product Description
Chemical Formula: LiNbO3 Growth Method: Czochralski
Crystal Structure: Trigonal System Melting Point: 1250℃
Density: 4.64 G/cm3 Mohs Hardness: 5
Refractive Index: No=2.286 Ne=2.203 (632.8nm) Lattice Constant: A=b=5.148Å , C=13.863 Å
High Light:

Ferroelectric Lithium Niobate Crystal

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Trigonal Lithium Niobate Crystal


Ferroelectric Material Lithium Niobate Crystal For Optical Communication

LiNbO3 Lithium Niobate  crystal For Optical Communication

Introduction:

Lithium niobate is an inorganic substance with the chemical formula LiNbO3. It is a negative crystal and a ferroelectric crystal. The polarized lithium niobate crystal has multiple properties such as piezoelectric, ferroelectric, optoelectronics, nonlinear optics, and pyroelectricity. material with a photorefractive effect. Lithium niobate crystal is one of the most widely used new inorganic materials.

 

It is a good piezoelectric transducer material, ferroelectric material, and electro-optical material. As an electro-optical material, lithium niobate plays an optical modulation role in optical communication. Its single crystals are important materials for piezoelectric sensors, optical modulators, and various other linear and nonlinear optical applications.

 

Advantages:

  • Wide transparency range,
  • High electro-optic and nonlinear optic coefficients,
  • Very high electromechanical coupling coefficients
  • Chemical and mechanical stability.

 

Specifications:

 

Growth method Czochralski
Crystal structure Trigonal system
Transparency Range 420-5200nm
Lattice constant a=b=5.148Å c=13.863 Å
Melting point 1250℃
Curie temperature 1142 ℃
Density 4.64 g/cm3
Hardness 5 Mohs
Refractive index No=2.286 ne=2.203 (632.8nm)

 

 

Ferroelectric Material Lithium Niobate Crystal For Optical Communication 0

 

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