SHANGHAI FAMOUS TRADE CO.,LTD
                                                                                                           
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3inch 4inch 6inch Lithium Niobate Single Crystal Thin Film LNOI Wafer <110> <100> <001>

Price Negotiable
Price: Negotiable
MOQ: Negotiable
Delivery Time: 2-4 weeks
Brand: ZMSH
Product Description

Product Description

 

3inch 4inch 6inch Lithium Niobate Single Crystal Thin Film LNOI Wafer <110> <100> <001>

 

 

Lithium niobate has excellent electro-optical, nonlinear, and piezoelectric properties, and integrated photonics devices based on lithium niobate thin films (LNOIs) on insulators have been widely developed with the help of advanced micro-nano processing techniques. In the future, high-performance LNOI materials will support the further development of LNOI-based micro-nano optics, integrated photonics, and microwave photonics. The preparation of high-performance LNOI materials will be an important step in the industrial application of lithium niobate optoelectronic devices.

 

 


Features

 

- Nonlinear optical properties: Lithium niobate (LiNbO₃) has excellent nonlinear optical properties, capable of generating second harmonics (SHG) and optical parametric amplification (OPA).

- Electro-optic effect: The material has a significant electro-optical effect, which can change its refractive index under the action of an electric field, and is widely used in modulators and optical switches.

- Acousto-optic effects: Lithium niobate wafers are sensitive to sound waves and can be used to make acousto-optic modulators and filters.

- Wide spectral range: Suitable for a wide spectral range from ultraviolet to near-infrared, suitable for a wide range of laser applications.

- Good thermal stability: Maintains good performance in high-temperature environments, making it suitable for harsh working conditions.

 


Technical Parameters

 

Properties (LiTaO3)  
Transmission Range (50% of total transmission) 0,275 - 5,25 µm (thickness 8 mm)
Refractive Index no = 2,139, ne = 2,139 @633 nm
Reflective Loss 13,17%@0,633 µm
Reststrahlen  
Density 7.4564 g/cm3
Melting Point 1650°C
Molecular Weight 235,89
Thermal Conductivity 4,6 W/m·K ; 8,78 W/m·K
Heat Capacity 424 J/(K·kg)
Thermal Expansion  
Hardness (Mohs) 750
Young`s Modulus  
Shear Modulus  
Bulk Modulus  
Rupture Modulus  
Elastic Coefficient C11 = 230; C12 = 42; C13= 79; C14= -11; C33= 276; C44 = 95,9 GPa
Dielectric Constant 41-53 @298K
Solubility in Water unsoluble
Crystal Structure Single crystal, synthetic
Crystal Type trigonal, a = 5,15 Å c = 13,77 Å nbsp]
Cleavage Planes no cleavage
Poisson Ratio  
Application electro optic Q-switch, integrated optical substrate, sensor, frequency converter
Remarks stoichiometric or congruent

 

 


Applications

 

1. Lasers: used for the modulation and frequency multiplication of laser diodes and solid-state lasers.

2. Optical communication: It is used as a modulator and optical switch in optical fiber communication to improve data transmission efficiency.

3. Sensors: Used in the manufacture of highly sensitive light sensors and MEMS devices.

4. Imaging equipment: used in imaging systems for optical interferometers and imaging sensors.

5. Quantum optics: as an important optical component in the field of quantum computing and quantum communication.

 


Our services

1. Factory direct manufacture and sell.

2. Fast, accurate quotes.

3. Reply to you within 24 working hours.

4. ODM: Customized design is avaliable.

5. Speed and precious delivery.


FAQ

1. Q: How to pay?
     A:100%T/T, Paypal, West Union, MoneyGram, Secure payment and Trade
         Assurance on and etc..

 

 

2. Q: Can I customize the products based on my need?
     A: Yes, we can customize the material, specifications for your optical components
         based on your needs.

Get in Touch

Have questions about our products or want to discuss a custom order? Our team is ready to help you.

Company SHANGHAI FAMOUS TRADE CO.,LTD
Location Room.1-1810,No.1079 Dianshanhu Road,Qingpu Area Shanghai city, China /201799
Contact Person Wang

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