Nova Patents
EP1579254B1

Vertical taper waveguide

Abstract

A tapered waveguide improves insertion loss occurring at the slab/waveguide interface of an optical array waveguide grating (AWG). The tapered waveguide has two segments. The first segment decreases from a first thickness, nearest the slab of the AWG to a second thickness moving away from the slab. The second segment has a substantially constant or uniform thickness equal to the second thickness of the first segment. The second segment may also have a swallowtail shape comprising a forked end having two sidewalls tapered back towards the first segment. Light that would otherwise be lost at the slab/waveguide interface is instead captured by the tapered waveguide which laterally channels the light back into the waveguides thus mitigating insertion loss.

EP1579254B1, drawing sheet 1
Sheet 1 of 4

Term

Term ended

Expired 5 December 2023, 2.8 years ago.

  1. Priority
  2. Filed
  3. Granted
  4. Expired
  5. Today

19 claims: 3 independent, 16 dependent

  1. 1
    An optical waveguide device (300) comprising:at least two waveguides (304) extending from a slab (306) in a first direction and spaced from one another in a second direction;a first segment (310) having a first thickness (h 1 ) at a first end new the slab that decreases to a second thickness (h 2 ) at a second end in a third direction perpendicular to the first and second directions;characterised by a second segment (312) having a non-zero thickness, integral with said first segment at said second end, having a substantially constant thickness equal to said second thickness in said third direction, wherein said first and second segments fit between said waveguides.
  2. 10
    The device (300) as recited by claim 1 wherein said waveguides (304) form the branches of a Y-splitter to reduce insertion loss, wherein said second segment (312) comprises a forked portion having sidewalls tapered vertically back towards said first segment (310).
  3. 14
    A method for reducing insertion loss between optical waveguides (304) extending from a slab (306) in a first direction and spaced from one another in a second direction, the method comprising:providing a first segment (310) between said waveguides, wherein the first segment has a thickness nearest said slab approximately equal to the thickness of said slab that decreases from a first thickness (h 1 ) to a second thickness (h 2 ) in a third direction perpendicular to said first and second directions, and providing a second segment (312) between said waveguides integral with said first segment, said second segment having a substantially constant thickness equal to said second thickness in said third direction.