IP Library Granted Patent US 9,804,328
Granted Patent B2
US 9,804,328 · App. 15/377,268 · Granted Oct 31, 2017

Optical multiplexing and de-multiplexing element and arrayed-waveguide grating-type optical wavelength filter

Inventor: Hideaki Okayama (Tokyo, JP)
Assignees: Oki Electric Industry Co., Ltd.; Photonics Electronics Technology Research Association
G02B6/12016G02B6/1228G02B6/2813G02B2006/12061G02B2006/12097
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Quick Facts
Patent No.
US 9,804,328
App. No.
15/377,268
Granted
Oct 31, 2017
Kind
B2
Abstract

There is provided an optical multiplexing and de-multiplexing element which is provided with a slab waveguide and a waveguide structure and can reduce radiation loss caused in a connection part between the slab waveguide and the waveguide structure. The waveguide structure includes a multimode interference (MMI) waveguide coupler and a narrow-width waveguide, the MMI waveguide coupler and the narrow-width waveguide are connected to each other in this order from a connection position with the slab waveguide along the waveguide direction, step portions are formed on both sides of the MMI waveguide coupler along the waveguide direction, and the thickness of the step portion is smaller than the thickness of the MMI waveguide coupler.

Claims (30)

1. An optical multiplexing and de-multiplexing element, comprising:

a slab waveguide; and

a waveguide structure, the waveguide structure including

a multi-mode interference (MMI) waveguide coupler and a narrow-width waveguide, the MMI waveguide coupler connected between the narrow-width waveguide and the slab waveguide along a first direction defining a waveguide direction, and

step portions formed on both sides of the MMI waveguide coupler and extending along the sides of the MMI waveguide coupler in the waveguide direction,

wherein a thickness of each step portion is less than a thickness of the MMI waveguide coupler, and

a length of each step portion, from the slab waveguide towards the narrow-width waveguide, along the waveguide direction is equal to a length of the MMI waveguide coupler, from the slab waveguide towards the narrow-width waveguide, along the waveguide direction.

2. The optical multiplexing and de-multiplexing element according to claim 1 , further comprising:

an MMI width change portion disposed between the MMI waveguide coupler and the narrow-width waveguide, the MMI width change portion having a first width at a first end connected to the MMI waveguide coupler and a second width at a second end connected to the narrow-width waveguide,

wherein the first width is a width of the MMI waveguide coupler, the second width is the width of the narrow-width waveguide, and the second width is less than the first width.

3. The optical multiplexing and de-multiplexing element according to claim 2 ,

wherein the MMI width change portion includes a first MMI tapered portion and a second MMI tapered portion which have taper angles different from each other,

a first end of the first MMI tapered portion is connected to the narrow-width waveguide and has a same width as the narrow-width waveguide, a second end of the first MMI tapered portion is connected to a first end of the second MMI tapered portion and has a same width as the first end of the second MMI tapered portion, and a second end of the second MMI tapered portion is connected to the MMI waveguide coupler and has a same width as the MMI waveguide coupler.

4. The optical multiplexing and de-multiplexing element according to claim 1 ,

wherein the waveguide structure includes a first tapered waveguide, a wide-width waveguide, and a second tapered waveguide, and

the narrow-width waveguide, the first tapered waveguide, the wide-width waveguide, and the second tapered waveguide are connected end-to-end along the waveguide direction.

5. The optical multiplexing and de-multiplexing element according to claim 1 , wherein the waveguide structure is made up of a waveguide core made of silicon and a clad layer, made of silicon, surrounding the waveguide core.

6. An arrayed-waveguide grating-type optical wavelength filter, comprising:

an input waveguide;

an input-side slab waveguide;

an input-side waveguide structure;

an arrayed waveguide including a plurality of channel waveguides having different optical path lengths;

an output-side waveguide structure;

an output-side slab waveguide; and

an output waveguide,

wherein the input waveguide, the input-side slab waveguide, the input-side waveguide structure, the arrayed waveguide, the output-side waveguide structure, the output-side slab waveguide, and the output waveguide are connected end-to-end, and

each of a set of the input-side slab waveguide and the input-side waveguide structure and a set of the output-side slab waveguide and the output-side waveguide structure corresponds to the optical multiplexing and de-multiplexing element according to claim 1 .

7. The arrayed-waveguide grating-type optical wavelength filter according to claim 6 ,

wherein each of the plurality of channel waveguides includes an input-side curved waveguide, a first straight waveguide, a first curved waveguide, a second straight waveguide, a second curved waveguide, a third straight waveguide, and an output-side curved waveguide, and

the input-side curved waveguide, the first straight waveguide, the first curved waveguide, the second straight waveguide, the second curved waveguide, the third straight waveguide, and the output-side curved waveguide are connected end-to-end.

Assignments (2)
NUNC PRO TUNC ASSIGNMENT Recorded Nov 23, 2022
From: PHOTONICS ELECTRONICS TECHNOLOGY RESEARCH ASSOCIATION
To: OKI ELECTRIC INDUSTRY CO., LTD.
Reel/Frame 061995/0247 →
ASSIGNMENT OF ASSIGNOR'S INTEREST Recorded Dec 13, 2016
From: OKAYAMA, HIDEAKI
To: OKI ELECTRIC INDUSTRY CO., LTD.; PHOTONICS ELECTRONICS TECHNOLOGY RESEARCH ASSOCIATION
Reel/Frame 040724/0362 →
Priority Claims (1)
JP 2016-022694 · Feb 9, 2016 · national
Continuity (1)
Related Publication 20170227713A1 · Aug 10, 2017