Wideband surface coupling
A wideband photonic bump (WBB), including: a positive taper of a polymer waveguide configured to further expand a light beam from an inverse taper to match a fiber optical mode of an optical fiber; a curved mirror formed on a surface of the WBB configured to reflect a light beam from the optical fiber; and a tilted flat mirror configured to direct the reflected light beam to an external optical fiber, wherein the WBB is coupled on the surface of a photonic integrated circuit (PIC).
1. A wideband photonic bump (WBB), comprising:
a positive taper of a polymer waveguide configured to further expand a light beam from an inverse taper to match a fiber optical mode of an optical fiber;
a curved mirror formed on a surface of the WBB configured to reflect a light beam from the optical fiber; and
a tilted flat mirror configured to direct the reflected light beam to an external optical fiber, wherein the WBB is coupled on the surface of a photonic integrated circuit (PIC).
2. The WBB of claim 1 , wherein the inverse taper is adiabatically narrowed down from a first width to a second width at an endpoint of the polymer waveguide.
3. The WBB of claim 1 , wherein the first width is less than 1 micron and the second width is approximately 3 microns.
4. The WBB of claim 1 , wherein the inverse taper is fabricated on the PIC.
5. The WBB of claim 1 , wherein the positive taper is changed from a first height to a second height, wherein the first high is higher than the second high.
6. The WBB of claim 1 , wherein first height is about 10 microns and the second the height is about 2 microns.
7. The WBB of claim 1 , wherein the optical fiber is connected to a photonic plug.
8. The WBB of claim 1 , wherein the curved mirror and the tilted flat mirror are fabricated on a substrate layer.
9. The WBB of claim 8 , wherein the optical fiber is stacked under the substrate layer.
10. The WBB of claim 8 , wherein the curved mirror and the tilted flat mirror are fabricated in a spacer.
11. The WBB of claim 10 , wherein the spacer is made of a transparent and non-conductive material.
12. The WBB of claim 1 , wherein the tilted flat mirror is tilted at a predefined angle, wherein the predefined angle is determined based on the optical path between the optical fiber and the curved mirror.
13. The WBB of claim 1 , wherein each of the tilted flat mirror and the curved mirror is formed using at least a nanoimprint lithography process.
14. The WBB of claim 13 , wherein the tilted flat mirror and the curved mirror are formed using at least a nanoimprint lithography process.