EP1189084A2

Planar lightwave circuit and optical circuit

Abstract

A planar lightwave circuit is provided. The planar lightwave circuit includes a waveguide and a spotsize converter which is a part of the waveguide, wherein a core is embedded in a cladding in the waveguide, and the spotsize converter is located near an end face of a substrate on which the planar lightwave circuit is formed, the spotsize converter including: a core width fine-tuning part in an end face side of the substrate; and a core width converting part which follows the core width fine-tuning part; wherein core width of the spotsize converter is minimum at an end face of the substrate, a mean taper angle θ1 of the core width fine-tuning part is larger than 0° and smaller than a mean taper angle θ2 of the core width converting part.

EP1189084A2, drawing sheet 1
Sheet 1 of 44

Term

Term ended

Projected expiry passed 10 September 2021, 5 years ago.

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29 claims: 14 independent, 15 dependent

  1. 1
    A planar lightwave circuit in which an input waveguide and an output waveguide are formed on a substrate wherein each of said input waveguide and said output waveguide are formed by a core and a cladding which covers said core, and refractive index of said core is higher than refractive index of said cladding, characterized in that :a core width of each of an input end side of said input waveguide and an output end side of said output waveguide changes gradually toward an end face of said substrate.
  2. 7
    The planar lightwave circuit as claimed in one of claims 1-6, wherein a marker is provided for indicating a cutting position of said input waveguide or said output waveguide, or indicating a position where said core width changes.
  3. 8
    The planar lightwave circuit as claimed in one of claims 1-7, further comprising a monitor waveguide in which an input end of said monitor waveguide is formed in an end face side of said substrate which is different from end face sides in which said input end of said input waveguide and said output end of said output waveguide are provided, wherein said monitor waveguide includes a core which is formed such that core width changes toward an end face of said substrate.
  4. 9
    The planar lightwave circuit as claimed in one of claims 1-8, further comprising a monitor waveguide, wherein an input end of said monitor waveguide is formed in an end face side of said substrate in which said input end of said input waveguide is located, and an output end of said monitor waveguide is formed in an end face side of said substrate in which said output end of said output waveguide is located, wherein shapes of an input end side and an output end side of said monitor waveguide are similar to said input end side of said input waveguide and said output end side of said output waveguide respectively.
  5. 10
    The planar lightwave circuit as claimed in one of claims 1-9, wherein said substrate is made of silicon and said input waveguide and said output waveguide are made of silica-based glass.
  6. 11
    An optical circuit which includes a waveguide and a spotsize converter which is a part of said waveguide, wherein a core is embedded in a cladding in said waveguide, and said spotsize converter is located near an end face of a substrate on which said optical circuit is formed, said spotsize converter characterized by :alternating taper parts and straight parts;and wherein core width of each of said taper parts decreases toward an end face of said substrate and core width of each of said straight parts is constant.
  7. 13
    An optical circuit which includes a waveguide and a spotsize converter which is a part of said waveguide, wherein a core is embedded in a cladding in said waveguide, and said spotsize converter is located near an end face of a substrate on which said optical circuit is formed, said spotsize converter characterized by :a plurality of straight parts via steps, core width of each straight part being constant;and wherein core width of said spotsize converter is minimum at an end face of said substrate, and a height of said step is larger than 0µm and equal to or smaller than 5µm.
  8. 14
    The optical circuit as claimed in one of claims 11-13, wherein a length of said straight part is equal to or larger than 1µm.
  9. 15
    The optical circuit as claimed in one of claims 11-13, wherein a mean taper angle θ of said spotsize converter is larger than 0° and equal to or smaller than 5° .
  10. 16
    An optical circuit which includes a waveguide and a spotsize converter which is a part of said waveguide, wherein a core is embedded in a cladding in said waveguide, and said spotsize converter is located near an end face of a substrate on which said optical circuit is formed, said spotsize converter characterized by :a core width fine-tuning part in an end face side of said substrate;and a core width converting part which follows said core width fine-tuning part;wherein core width of said spotsize converter is minimum at an end face of said substrate, a mean taper angle θ 1 of said core width fine-tuning part is larger than 0° and smaller than a mean taper angle θ 2 of said core width converting part.
  11. 21
    The optical circuit as claimed in one of claims 16-20, wherein a mean taper angle θ 1 of said core width fine-tuning part is larger than 0° and equal to or smaller than 0.04° , and a mean taper angle θ 2 of said core width converting part is larger than 0.04° and equal to or smaller than 5° .
  12. 22
    The optical circuit as claimed in one of claims 16-21, wherein a marker for forming an end face of said substrate is provided in said optical circuit.
  13. 24
    The optical circuit as claimed in one of claims 16-23, wherein a monitor waveguide is provided on said substrate, said monitor waveguide comprising a second spotsize converter comprising:a second core width fine-tuning part in an end face side of said substrate;and a second core width converting part which follows said second core width fine-tuning part;wherein core width of said second spotsize converter is minimum at an end face of said substrate, a mean taper angle θ 1 of said second core width fine-tuning part is larger than 0° and smaller than a mean taper angle θ 2 of said second core width converting part.
  14. 29
    An optical circuit which includes input ports and output ports, each of said input ports and said output ports characterized by :a waveguide and a spotsize converter which is a part of said waveguide, wherein a core is embedded in a cladding in said waveguide, and said spotsize converter is located near an end face of a substrate on which said waveguide is formed, said spotsize converter comprising: a core width fine-tuning part in an end face side of said substrate;and a core width converting part which follows said core width fine-tuning part;wherein core width of said spotsize converter is minimum at an end face of said substrate, a mean taper angle θ 1 of said core width fine-tuning part is larger than 0° and smaller than a mean taper angle θ 2 of said core width converting part.