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4 Inch Lithium Niobate Thin Film on Insulator (LNOI) X-Cut - MSE Supplies LLC

4 Inch Lithium Niobate Thin Film Lithium Niobate Wafers Z-Cut (LiNbO3 / SiO2 / LiNbO3)

To better serve you, we would like to discuss your specific requirement, Please Contact Us for a quote.

MSE Supplies offers Lithium Niobate (LiNbO3) Thin Film on Lithium Niobate wafer. The wafer consists of a SiO2 layer in between lithium niobate and lithium niobate thin film layers. Lithium niobate is a versatile material with high nonlinearities and unique optical and electro-optical properties, which is widely used in photonics related applications, including modulators and many other optical communication devices. The insulating substrate provides a stable platform and reduces surface recombination, which makes it a better material than bulk lithium niobate in many ways, including smaller size and footprint (suitable for integration of miniaturized electronic devices), lower propagation loss (more efficient), higher mechanical stability and resistance to environment, etc. It is now investigated as a promising material for the development of next-generation electronic and photonic devices.

Specification:

      General Wafer
      Structure LiNbO3/ SiO2 / LiNbO3
      Diameter Φ100 ± 0.2 mm
      Thickness 500 ± 20 μm
      Primary Flat Length 32.5 ± 2 mm
      Secondary Flat Length 12 ± 2 mm
      Wafer Beveling R Type
      LTV < 1.5 μm (5∗5 mm2) / 95%
      Bow  Within 50 μm
      Edge Exclusion
      5 mm
      Lithium Niobate Layer
      Thickness

      300 ± 20 nm ; 400 ± 20 nm ; 500 ± 20 nm ; 600 ± 20 nm ; 700 ± 20 nm

      Orientation Z axis ± 0.5° 
      Primary Flat Orientation Perpendicular to Y axis ± 1° 
      Surface Roughness (Ra) < 1 nm @ 10  μm x 10 μm
      Defects > 1 mm None ; ≦ 1 mm within 80 total
      Scratch > 1 cm None ; ≦ 1 cm within 3 total
      SiO2 Layer
      Thickness 2000 ± 100 nm
      Substrate
      Material LiNbO3
      Orientation Same as top layer

        Please contact us for bulk order or customized shape, size, thickness and substrate. 

        References:

        1. Integrated photonics on thin-film lithium niobate. Advances in Optics and Photonics13(2), 242-352.

        2. Grating coupler on lithium niobate thin film waveguide with a metal bottom reflector. Optical Materials Express7(11), 4010-4017.

        3. Waveguides in single-crystal lithium niobate thin film by proton exchange. Optics Express23(2), 1240-1248.


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