TeO2 Crystal-Low Velocity of Propagation Along (110) Axis

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  • TeO2 Crystal-Low Velocity of Propagation Along (110) Axis
  • TeO2 Crystal-Low Velocity of Propagation Along (110) Axis
  • TeO2 Crystal-Low Velocity of Propagation Along (110) Axis
  • TeO2 Crystal-Low Velocity of Propagation Along (110) Axis
  • TeO2 Crystal-Low Velocity of Propagation Along (110) Axis
  • TeO2 Crystal-Low Velocity of Propagation Along (110) Axis
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  • Overview
  • Application
  • Product Parameters
Overview

Basic Info.

Model NO.
FW-CRYSTAL
Currency
USD, Euro, RMB
Polish
Customized
Coat
Customized
Transport Package
Box
Specification
costomized
Trademark
FineWin
Origin
China

Product Description

TeO2 is a kind of acousto-optic material with high quality factor. It has good properties of birefringence and optical rotation with low velocity of propagation along (110) axis.Under the same clear aperture, the acousto-optic device produced by TeO2 crystals has the advantages of the orders of magnitude improvement in resolution, fast response speed, small driving power, high diffraction efficiency, as well as stable and reliable performance.
TeO2 crystals are ideal single crystal material used to produce different kinds of acousto-optic device, such as acousto-optic deflector, modulator, resonator and tunable filter.
 
Application

TeO2 crystals can be used to produce kinds of acousto-optic device, such as acousto-optic deflector, acousto-optic Q-switched and SAWD. Thus, these crystals are widely used in lidar, the scanning of TV and large screen's displayer, the optical memory of photon computer and laser communication.

We can provide 2inch, 3inch 4inch TeO2 ingots and all specs of wafers,bars, and blocks. Any of your questions and comments are warmly welcome.
 
Product Parameters

TeO2, Colorless synthetic single crystal, grown from melt with Czochralski method

Symmetry: Tetragonal, 422 (D4)
Lattice distances: a = 4.8122 A; c = 7.6157 A
Molecular weight: 159.5
Density, g/cm3: 5.99 ± 0.03
Melting point: 733 0С
Hardness: 3 - 4 Moh's hardness scale
Thermal expansion, ·10-6 К-1: α11 = 17.7; α22 = 17.7; α33 = 5.5
Transmission: 0.35 - 5.0 μm
Refractive indexes:
λ, μm no ne Δn = ne - no
0.4047 2.4315 2.6167 0.1852
0.4358 2.3834 2.5583 0.1749
0.4678 2.3478 2.5164 0.1686
0.4800 2.3366 2.5036 0.1670
0.5086 2.3150 2.4779 0.1629
0.5461 2.2931 2.4520 0.1589
0.5893 2.2738 2.4295 0.1557
0.6328 2.2597 2.4119 0.1522
0.6438 2.2562 2.4086 0.1524
0.690 2.2450 2.3955 0.1505
0.800 2.226 2.373 0.147
1.00 2.208 2.352 0.144
Optical activity, along [001]:
λ, μm p, deg/mm λ, μm p, deg/mm
0.3698 587.1 0.5893 104.9
0.3783 520.6 0.6328 86.9
0.3917 437.4 0.700 67.4
0.4152 337.6 0.800 48.5
0.4382 271.0 0.900 37.4
0.4630 221.1 1.00 29.5
0.4995 171.2 1.10 23.8
0.5300 143.4    
Dielectric permittivity: ε11 = 22.9; ε33 = 24.7
Elastic constants, ·10-10 N/m2: c11=5.57; c33=10.58; c44=2.65; c66=6.59; c12=5.12; c13=2.18
Photoelasticity coefficients: λ = 0.6328 μm
p11=0.0074; p12=0.187; p13=0.340; p31=0.0905; p33= 0.240; p44= - 0.17; p66= - 0.0463
Acoustooptical properties: λ = 0.6328 μm
Nsound Usound Vsound,
·103 м/с
Nlight Elight M1, ·10-7см2· с/г M2,
·10-18с3/г
[100] [100] 2.98 [010] [100] 0.097 0.048
[100] [100] - [010] [001] 22.9 10.6
[001] [001] 4.26 [010] [100] 142 34.5
[001] [001] - [010] [001] 113 25.6
[100] [010] 3.04 [001] optional 3.70 1.76
[110] [110] 4.21 [-110] [110] 323 0.802
[110] [110] - [-110] [001] 16.2 3.77
[101] [101] 3.64 [-101] [010] 101 33.4
[010] [010] 2.98 [-101] [101] 42.6 20.4
[110] [-110] 0.617 [001] optional 68.6 793
[101] [-101] 2.08 [010] [100] 76.4 77

Facilities:

TeO2 Crystal-Low Velocity of Propagation Along (110) Axis
TeO2 Crystal-Low Velocity of Propagation Along (110) Axis

TeO2 Crystal-Low Velocity of Propagation Along (110) AxisTeO2 Crystal-Low Velocity of Propagation Along (110) AxisTeO2 Crystal-Low Velocity of Propagation Along (110) Axis



 

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