IP Library Granted Patent US 9,618,694
Granted Patent B2
US 9,618,694 · App. 13/698,573 · Granted Apr 11, 2017

Optical waveguide and arrayed waveguide grating

Inventors: Keiichi Morita (Yokohama, JP); Kazumi Shimizu (Yokohama, JP); Kouji Kawashima (Yokohama, JP); Tomoharu Niitsu (Yokohama, JP)
Assignee: NTT ELECTRONICS CORPORATION
G02B6/12014G02B6/2813
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Quick Facts
Patent No.
US 9,618,694
App. No.
13/698,573
Granted
Apr 11, 2017
Kind
B2
Abstract

A technique that does not increase the circuit size, does not make the circuit design and manufacturing difficult, and can reduce insertion loss when light enters from a slab waveguide toward an arrayed waveguide or when the light enters from the arrayed waveguide toward the slab waveguide. An optical waveguide provided with a slab waveguide in which a grating is formed therein at a distance from an end, and an arrayed waveguide whose end is connected to an end of the slab waveguide at a position where a constructive interference portion of a self-image of the grating is formed. An arrayed waveguide grating provided with a first input/output waveguide, the above-mentioned optical waveguide where an end of the slab waveguide on the opposite side of the arrayed waveguide is connected to an end of the first input/output waveguide, a second slab waveguide connected to an end of the arrayed waveguide on the opposite side of the slab waveguide, and a second input/output waveguide connected to an end of the second slab waveguide on the opposite side of the arrayed waveguide.

Claims (12)

1. An arrayed waveguide grating comprising:

two or more first input/output waveguides;

a first slab waveguide connected to an end of the first input/output waveguides;

an arrayed waveguide connected to an end of the first slab waveguide on an opposite side of the first input/output waveguides;

a second slab waveguide connected to a first end of the arrayed waveguide on an opposite side of the first slab waveguide;

one or more second input/output waveguide(s) connected to an end of the second slab waveguide on an opposite side of the arrayed waveguide; and

a grating formed in the first slab waveguide at a distance from the end of the first slab waveguide, and wherein a second end of the arrayed waveguide is connected to a position deviated from a position where a constructive interference portion of a self-image of the grating is formed so that a light intensity distribution from the first input/output waveguides is substantially uniform when light enters from the one or more second input/output waveguide(s) toward the first input/output waveguides.

2. The arrayed waveguide grating according to claim 1 , wherein the grating is a phase grating.

3. The arrayed waveguide grating according to claim 2 , wherein a phase difference given to incident light by the phase grating is approximately 90 degrees.

4. The arrayed waveguide grating according to claim 2 , wherein a phase difference given to incident light by the phase grating is approximately 180 degrees.

5. The arrayed waveguide grating according to claim 2 , wherein the phase grating comprises refractive index difference regions which are disposed in the first slab waveguide at a distance in a direction substantially vertical to a light propagation direction and have a refractive index different from refractive indices of other regions in the first slab waveguide.

6. The arrayed waveguide grating according to claim 5 , wherein the refractive index difference regions adjacent to each other are connected by a region having a refractive index equal to the refractive index of the refractive index difference regions, and the refractive index difference regions are integral with each other across the entire phase grating.

Assignments (1)
ASSIGNMENT OF ASSIGNOR'S INTEREST Recorded Nov 16, 2012
From: MORITA, KEIICHI; SHIMIZU, KAZUMI; KAWASHIMA, KOUJI; NIITSU, TOMOHARU
To: NTT ELECTRONICS CORPORATION
Reel/Frame 029315/0342 →
Priority Claims (2)
JP 2010-121904 · May 27, 2010 · national
JP 2010-251223 · Nov 9, 2010 · national
Continuity (1)
Related Publication 20130058608A1 · Mar 7, 2013