Wavelength conversion device and method of fabricating the same
View Patent ↗A wavelength conversion device includes a base substrate having a transparent electrode on one surface thereof and a ferroelectric single crystal substrate provided with an optical waveguide. The ferroelectric single crystal substrate has an insulating film formed on one surface and is bonded to the base substrate such that the insulating film faces the transparent electrode.
1. A method of fabricating a wavelength conversion device comprising:
a base substrate having a transparent electrode directly on one surface thereof; and
a ferroelectric single crystal substrate provided with an optical waveguide, having an insulating film formed on one surface, and bonded to the base substrate such that the insulating film faces the transparent electrode,
the method comprising:
a step of forming the transparent electrode on the base substrate;
a step of forming the insulating film on one surface of the ferroelectric single crystal substrate;
a bonding step of bonding a transparent-electrode formed surface of the base substrate and an insulating-film formed surface of the ferroelectric single crystal substrate;
a polishing step of polishing the other surface of the ferroelectric single crystal substrate so as to thin the ferroelectric single crystal substrate;
a step of forming an electrode film on the thinned ferroelectric single crystal substrate;
a step of patterning the electrode film into a comb-shaped electrode and a counter electrode for the comb-shaped electrode; and
a step of applying a voltage to between the counter electrode and the comb-shaped electrode of the thinned ferroelectric single crystal substrate and to the base substrate in the horizontal direction,
wherein the step of applying a voltage includes applying a bias voltage of DC 250 to 600 V and a pulse voltage of 100 to 500 V to between the counter electrode and the comb-shaped electrode.
2. The method of fabricating the wavelength conversion device according to claim 1 , wherein the optical waveguide is ridge-shaped.
3. The method of fabricating the wavelength conversion device according to claim 1 , wherein the step of applying a voltage includes applying a voltage to the transparent electrode so as to have the same electric potential as an electric potential of the counter electrode.
4. The method of fabricating the wavelength conversion device according to claim 1 , wherein the transparent electrode includes an indium tin oxide film or an InTiO film.
5. The method of fabricating the wavelength conversion device of claim 1 wherein the ferroelectric single crystal substrate has a thickness of 2.5 to 5.0 μm.
6. The method of fabricating the wavelength conversion device according to claim 1 , wherein the bonding step includes bonding the transparent-electrode formed surface of the base substrate and the insulating-film formed surface of the ferroelectric single crystal substrate via an adhesive layer.