IP Library › Granted Patent US 12,288,962
Granted Patent B2
US 12,288,962 · App. 17/760,662 · Granted Apr 29, 2025

Optical transmitter

Inventors: Takahiko Shindo (Musashino, JP); Meishin Chin (Musashino, JP); Shigeru Kanazawa (Musashino, JP)
Assignee: Nippon Telegraph and Telephone Corporation
H01S5/026H01S5/0265H01S5/12H01S5/34H01S5/50H01S5/5027G02F1/01708G02F2203/70H01S5/06226H01S5/1014H01S5/1039H04B10/503
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Quick Facts
Patent No.
US 12,288,962
App. No.
17/760,662
Granted
Apr 29, 2025
Kind
B2
Abstract

In an EADFB laser with an integrated SOA, a new configuration in which deterioration of optical waveform quality is solved or mitigated while taking advantage of characteristics that the same layer structure can be used and the manufacturing process can be simplified is shown. In an optical transmitter of the present disclosure, a carrier density is optimized depending on a light intensity inside the SOA and an amount of carrier consumption. The SOA is electrically separated into a plurality of regions, and a current is injected into each region independently. The divided SOA region is configured so that a length of the SOA region becomes shorter as a region is farther from an incidence end of the SOA. Further, for the divided SOA, an amount of carrier consumption increases as the SOA region is farther from the incidence end, so that a current injection amount is increased.

Claims (13)

1. An optical transmitter comprising, on a substrate:

a distributed feedback (DFB) laser including an active region with a multi quantum well;

an electro-absorption (EA) modulator configured to modulate light emitted from the DFB laser; and

a semiconductor optical amplifier (SOA) having an active region with an identical composition as the active region of the DFB laser and configured to amplify signal light from the EA modulator,

wherein the SOA includes two or more electrically separated regions defined by contact layers disposed on the SOA along an optical waveguide direction, and a length in the optical waveguide direction of an N-th region (N is equal to or greater than 2) counting from an incidence end of the SOA is shorter than a length of the region located closer to the incidence end than the N-th region.

2. The optical transmitter according to claim 1 ,

wherein the DFB laser, the EA modulator, and the SOA are monolithically integrated on the substrate, and

optical waveguide structures of the DFB laser and the SOA are an identical layer structure.

3. The optical transmitter according to claim 1 , wherein a current density of the N-th region of the SOA is set to be higher than a current density of the region located closer to the incidence end than the N-th region.

4. The optical transmitter according to claim 1 , wherein a passive waveguide is included between two adjacent regions among the two or more electrically separated regions of the SOA.

5. The optical transmitter according to claim 4 , wherein a waveguide width of the region located closer to the incidence end than the N-th region is larger than a waveguide width of the N-th region, the waveguide width is a width of the waveguide perpendicular to the optical waveguide direction in a plane of the waveguide.

6. The optical transmitter according to claim 4 , wherein a waveguide width of a second region of the SOA is 0.8 μm or more and 2.0 μm or less.

7. The optical transmitter according to claim 1 , wherein a length of a first region of the SOA in an optical waveguide direction is 150 μm or less.

Assignments (1)
ASSIGNMENT OF ASSIGNOR'S INTEREST Recorded Mar 15, 2022
From: SHINDO, TAKAHIKO; CHIN, MEISHIN; KANAZAWA, SHIGERU
To: NIPPON TELEGRAPH AND TELEPHONE CORPORATION
Reel/Frame 059271/0588 →
Continuity (1)
Related Publication 20220337026A1 · Oct 20, 2022
References Cited (9)
US 20100202776A1 · Kakitsuka · 2010 [cited by examiner]
US 20210234332A1 · Shindo · 2021 [cited by examiner]
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Cited By (1)
US 12,671,229