IP Library Granted Patent US 11,664,644
Granted Patent B2
US 11,664,644 · App. 17/028,307 · Granted May 30, 2023

Wavelength tunable light source, optical transmission apparatus using the same, and method of controlling wavelength tunable light source

Inventor: Shinsuke Tanaka (Hiratsuka, JP)
Assignee: FUJITSU LIMITED
H01S5/4087H01S5/1007H01S5/1092H01S5/142H01S5/4062H01S5/4068H01S5/4025H01S5/5027
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Quick Facts
Patent No.
US 11,664,644
App. No.
17/028,307
Granted
May 30, 2023
Kind
B2
Abstract

A wavelength tunable light source includes: a common wavelength filter that has periodic transmission peak wavelengths or reflection peak wavelengths and is commonly used for a plurality of channels; a wavelength tunable filter that is coupled to the common wavelength filter and has a one-input and multiple-output configuration which has a plurality of output ports, and that has a plurality of transmission peak wavelengths corresponding to the plurality of channels at the plurality of output ports; and a plurality of gain media optically coupled to the plurality of output ports of the wavelength tunable filter, wherein a plurality of laser cavities that perform laser oscillation at a plurality of different wavelengths are formed between the common wavelength filter and the plurality of gain media.

Claims (20)

1. A wavelength tunable light source comprising: a common wavelength filter that has periodic transmission peak wavelengths or reflection peak wavelengths and is commonly used for a plurality of channels; a wavelength tunable filter that is coupled to the common wavelength filter and has a one-input and multiple-output configuration which has a plurality of output ports, and that perform an adjustment by a wavelength adjustment mechanism in such a manner that a plurality of transmission peak wavelengths corresponding to the plurality of channels match with each other at the plurality of output ports; a plurality of gain media optically coupled to the plurality of output ports of the wavelength tunable filter; and a second wavelength tunable filter that has a multiple-input and one-output configuration coupled to the plurality of gain medias, and same filter device structure and filter wavelength spacing as the wavelength tunable filter, wherein a plurality of laser cavities that perform laser oscillation at a plurality of different wavelengths are formed between the common wavelength filter and the plurality of gain medias, wherein an optical amplifier is coupled to the output of the second wavelength tunable filter.

2. The wavelength tunable light source according to claim 1 , further comprising the optical amplifier that collectively amplifies outputs of the plurality of laser cavities.

3. The wavelength tunable light source according to claim 1 , wherein each of the plurality of gain media includes a high reflection film on a face opposite side to the wavelength tunable filter, and an optical amplifier is coupled to an output tap between the common wavelength filter and the wavelength tunable filter.

4. The wavelength tunable light source according to claim 1 , wherein the common wavelength filter includes a resonator that has the periodic transmission peak wavelengths or reflection peak wavelengths.

5. The wavelength tunable light source according to claim 1 , further comprising a wavelength adjustment mechanism that is optically coupled to the common wavelength filter.

6. The wavelength tunable light source according to claim 5 , wherein at least one of the common wavelength filter and the wavelength tunable filter is controlled based on an output of the wavelength adjustment mechanism.

7. The wavelength tunable light source according to claim 1 , further comprising a longitudinal mode adjuster that adjusts longitudinal modes of the plurality of laser cavities.

8. The wavelength tunable light source according to claim 7 , wherein the longitudinal mode adjuster is inserted between the output ports of the wavelength tunable filter and the plurality of gain media.

9. The wavelength tunable light source according to claim 1 , wherein the wavelength tunable filter is a wavelength selection filter of an asymmetrical Mach-Zehnder interferometer type, an array waveguide gratings type, an echelle grating type, or a ring resonator type.

10. The wavelength tunable light source according to claim 1 , wherein the plurality of gain media are arranged in parallel with each other and each of the plurality of gain media is coupled to the respective plurality of output ports via an anti-reflection film.

11. An optical transmission apparatus comprising: a wavelength tunable light source; a demultiplexer that demultiplexes output light of the wavelength tunable light source to respective plurality of pieces of light which have different wavelengths; an optical modulator array that modulates the respective plurality of pieces of light which have different wavelengths; and a multiplexer that multiplexes the pieces of output light of the optical modulator array, wherein the wavelength tunable light source includes: a common wavelength filter that has periodic transmission peak wavelengths or reflection peak wavelengths and is commonly used for a plurality of channels; a wavelength tunable filter that is coupled to the common wavelength filter and has a one-input and multiple-output configuration which has a plurality of output ports, and that perform an adjustment by a wavelength adjustment mechanism in such a manner that a plurality of transmission peak wavelengths corresponding to the plurality of channels match with each other at the plurality of output ports; a plurality of gain media optically coupled to the plurality of output ports of the wavelength tunable filter; and a second wavelength tunable filter that has a multiple-input and one-output configuration coupled to the plurality of gain medias, and same filter device structure and filter wavelength spacing as the wavelength tunable filter, wherein a plurality of laser cavities that perform laser oscillation at a plurality of different wavelengths are formed between the common wavelength filter and the plurality of gain medial wherein an optical amplifier is coupled to the output of the second wavelength tunable filter.

12. The optical transmission apparatus according to claim 11 , wherein the plurality of gain media are arranged in parallel with each other and each of the plurality of gain media is coupled to the respective plurality of output ports via an anti-reflection film.

13. A method of controlling a wavelength tunable light source that performs laser oscillation at a plurality of different wavelengths, wherein the wavelength tunable light source includes:

a common wavelength filter;

a wavelength tunable filter that is coupled to the common wavelength filter and has a one-input and multiple-output configuration; and

a plurality of gain media that are coupled to output ports of the wavelength tunable filter, and the method comprising:

adjusting periodic transmission peak wavelengths or reflection peak wavelengths of the common wavelength filter to a desired wavelength interval in a state in which one channel in a plurality of channels of the wavelength tunable light source is activated;

after the adjustment of the common wavelength filter, adjusting a transmission peak wavelength of the one channel of the wavelength tunable filter and transmission peak wavelengths of at least some of remaining channels to the wavelength interval of the common wavelength filter; and

thereafter, amplifying and outputting outputs of all channels collectively.

14. The method of controlling a wavelength tunable light source according to claim 13 , wherein the wavelength tunable filter includes a waveguide in which a plurality of asymmetrical Mach-Zehnder interferometers are coupled in a multi-stage tree shape, and the method further comprising: selecting every other output ports of the wavelength tunable filter; and controlling the transmission peak wavelength of the selected channel.

Assignments (2)
ASSIGNMENT OF ASSIGNOR'S INTEREST Recorded Aug 13, 2025
From: FUJITSU LIMITED
To: 1FINITY INC.
Reel/Frame 072432/0779 →
ASSIGNMENT OF ASSIGNOR'S INTEREST Recorded Sep 22, 2020
From: TANAKA, SHINSUKE
To: FUJITSU LIMITED
Reel/Frame 053847/0140 →
Priority Claims (1)
JP JP2019-193560 · Oct 24, 2019 · national
Continuity (1)
Related Publication 20210126421A1 · Apr 29, 2021