IP Library Patent Application 18289389
Patent Application
App. No. 18/289,389

OPTICAL AMPLIFICATION APPARATUS AND OPTICAL AMPLIFICATION METHOD

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Patent No.
US None
App. No.
18/289,389
Abstract

An optical amplification device includes: a polarization demultiplexing unit that separates an optical signal into a first polarized wave and a second polarized wave; a first optical amplification unit that amplifies the first polarized wave by using a first amplification medium; a second optical amplification unit that amplifies the second polarized wave by using a second amplification medium; a first band demultiplexing unit that demultiplexes the first polarized wave into a band component of the first polarized wave and a band component of first phase conjugate light; a second band demultiplexing unit that demultiplexes the second polarized wave into a band component of the second polarized wave and a band component of second phase conjugate light; a signal monitoring unit that measures a first optical power value of either the band component of the first polarized wave or the band component of the first phase conjugate light and a second optical power value of either the band component of the second polarized wave or the band component of the second phase conjugate light; an amplification gain control unit that controls an amplification band and gain of the first amplification medium and an amplification band and gain of the second amplification medium on the basis of the first optical power value and the second optical power value; and a polarization combination unit that multiplexes the band component of the first polarized wave and the band component of the second polarized wave not measured by the signal monitoring unit.

Claims (30)

1 . An optical amplification device comprising:

a polarization demultiplexer that separates an optical signal into a first polarized wave and a second polarized wave orthogonal to each other;

a first optical amplifier that amplifies the first polarized wave by using a first amplification medium;

a second optical amplifier that amplifies the second polarized wave by using a second amplification medium;

a first band demultiplexer that demultiplexes the amplified first polarized wave into a band component of the first polarized wave and a band component of first phase conjugate light generated by the amplification;

a second band demultiplexer that demultiplexes the amplified second polarized wave into a band component of the second polarized wave and a band component of second phase conjugate light generated by the amplification;

a signal monitor that measures a first optical power value of optical power of either the band component of the first polarized wave or the band component of the first phase conjugate light and a second optical power value of optical power of either the band component of the second polarized wave or the band component of the second phase conjugate light;

an amplification gain controller that controls an amplification band and gain of the first amplification medium and an amplification band and gain of the second amplification medium on the basis of the first optical power value and the second optical power value; and

a polarization combiner multiplexes the band component of the first polarized wave not measured by the signal monitor and the band component of the second polarized wave not measured by the signal monitor.

2 . The optical amplification device according to claim 1 , wherein

the amplification gain controller controls phase matching characteristics of the first amplification medium and the second amplification medium and at least one of an optical power value of excitation light incident on the first amplification medium together with the first polarized wave or an optical power value of excitation light incident on the second amplification medium together with the second polarized wave on the basis of distributions of the first optical power value and the second optical power value such that the amplification bands of the first amplification medium and the second amplification medium are maximized and output power of the first amplification medium and output power of the second amplification medium match between the polarized waves.

3 . The optical amplification device according to claim 1 , wherein

the amplification gain controller controls phase matching characteristics of the first amplification medium and the second amplification medium and at least one of an optical power value of excitation light incident on the first amplification medium together with the first polarized wave or an optical power value of excitation light incident on the second amplification medium together with the second polarized wave on the basis of distributions of the first optical power value and the second optical power value such that the amplification bands of the first amplification medium and the second amplification medium are maximized or output power of the first amplification medium and output power of the second amplification medium match between the polarized waves.

4 . The optical amplification device according to claim 1 , wherein

the signal monitor measures the first optical power value of the optical power of the band component of the first polarized wave and the second optical power value of the optical power of the band component of the second phase conjugate light or measures the first optical power value of the optical power of the band component of the first phase conjugate light and the second optical power value of the optical power of the band component of the second polarized wave.

5 . The optical amplification device according to claim 1 , wherein

the first optical amplifier amplifies the first polarized wave by using first excitation light,

the second optical amplifier amplifies the second polarized wave by using second excitation light, and

the amplification gain controller controls optical power of the first excitation light and optical power of the second excitation light so as to match peak power of the first optical power value with peak power of the second optical power value.

6 . The optical amplification device according to claim 5 , wherein

the amplification gain controller controls the optical power of the first excitation light and the optical power of the second excitation light so as to match with output peak power of the amplification medium having the smallest gain.

7 . An optical amplification method comprising:

a polarization demultiplexing step of separating an optical signal into a first polarized wave and a second polarized wave orthogonal to each other;

a first optical amplification step of amplifying the first polarized wave by using a first amplification medium;

a second optical amplification step of amplifying the second polarized wave by using a second amplification medium;

a first band demultiplexing step of demultiplexing the amplified first polarized wave into a band component of the first polarized wave and a band component of first phase conjugate light generated by the amplification;

a second band demultiplexing step of demultiplexing the amplified second polarized wave into a band component of the second polarized wave and a band component of second phase conjugate light generated by the amplification;

a signal monitoring step of measuring a first optical power value of optical power of either the band component of the first polarized wave or the band component of the first phase conjugate light and a second optical power value of optical power of either the band component of the second polarized wave or the band component of the second phase conjugate light;

an amplification gain control step of controlling an amplification band and gain of the first amplification medium and an amplification band and gain of the second amplification medium on the basis of the first optical power value and the second optical power value; and

a polarization multiplexing step of multiplexing the band component of the first polarized wave not measured in the signal monitoring step and the band component of the second polarized wave not measured in the signal monitoring step.

Assignments (2)
CHANGE OF NAME Recorded Oct 3, 2025
From: NIPPON TELEGRAPH AND TELEPHONE CORPORATION
To: NTT, INC.
Reel/Frame 072996/0465 →
ASSIGNMENT OF ASSIGNOR'S INTEREST Recorded Nov 3, 2023
From: SHIMIZU, SHIMPEI; KAZAMA, TAKUSHI; KOBAYASHI, TAKAYUKI; MIYAMOTO, YUTAKA; UMEKI, TAKESHI
To: NIPPON TELEGRAPH AND TELEPHONE CORPORATION
Reel/Frame 065445/0434 →