Optical devices with engineered nonlinear nanocomposite materials
The invention relates to an optical device. The optical device comprises a waveguide core and a nanocomposite material optically coupled to the waveguide core. The nanocomposite material includes a plurality of quantum dots. The nanocomposite material has a nonlinear index of refraction γ that is at least 10 −9 cm 2 /W when irradiated with an activation light having a wavelength λ between approximately 3×10 −5 cm and 2×10 −4 cm.
1. An optical device comprising:
a film formed of a nanocomposite material, said nanocomposite material including a plurality of quantum dots, said nanocomposite material having a nonlinear index of refraction γ that is at least 10 −9 cm 2 /W when irradiated with an activation light having a wavelength λ between approximately 3×10 −5 cm and 2×10 −4 cm; and
a light source optically coupled to said film, said light source being configured to irradiate said film with said activation light using a predetermined illumination pattern.
2. The optical device of claim 1 , wherein γ is at least 10 −8 cm 2 /W.
3. The optical device of claim 1 , wherein said nanocomposite material has a figure-of-merit that is at least 1, said figure-of-merit being defined as 2γ/βλ, where β is a two-photon absorption coefficient of said nanocomposite material expressed in cm/W.
4. The optical device of claim 3 , wherein said figure-of-merit is at least 1.8.
5. The optical device of claim 1 , wherein said light source includes an array of vertical cavity surface emitting lasers positioned adjacent to said film.