IP Library Granted Patent US 7,230,958
Granted Patent B2
US 7,230,958 · App. 10/835,225 · Granted Jun 12, 2007

Raman amplifier and raman pumping method

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Quick Facts
Patent No.
US 7,230,958
App. No.
10/835,225
Granted
Jun 12, 2007
Kind
B2
Abstract

Provided are a Raman amplifier and a Raman pumping method. A light source unit outputs a pumping light having a wavelength that periodically changes. A light intensity control unit varies a light intensity of the pumping light using the pumping light to improve the gain flatness of a Raman gain. A control unit directs the light intensity control unit to control the light intensity of the pumping light in synchronization with changes in the wavelength of the pumping light.

Claims (28)

1. A Raman amplifier comprising:

a light source unit, which outputs a pumping light having a wavelength that periodically changes;

a light intensity control unit, which varies the light intensity of the pumping light to improve the gain flatness of a Raman gain generated by the pumping light over a signal bandwidth;

a control unit, which controls the light intensity control unit to vary the light intensity of the pumping light in synchronization with a change in the wavelength of the pumping light,

a tap, which splits a portion of the pumping light output from the light intensity control unit; and

a light detection unit, which converts the split portion of the pumping light into an electric signal,

wherein the control unit outputs a control signal for controlling the light intensity of the pumping light based on the electric signal.

2. A Raman amplifier comprising:

a light source unit, which outputs a pumping light having a wavelength that periodically changes;

a light intensity control unit, which varies the light intensity of the pumping light to improve the gain flatness of a Raman gain generated by the pumping light over a signal bandwidth;

a control unit, which controls the light intensity control unit to vary the light intensity of the pumping light in synchronization with a change in the wavelength of the pumping light, wherein the light source unit comprises:

a first light source unit, which outputs a first pumping light having a wavelength that periodically changes;

a second light source unit, which outputs a second pumping light having the same wavelength as that of the first pumping light and a polarization state orthogonal to that of the first pumping light; and

a polarized light beam coupler, which couples the first pumping light and the second pumping light and outputs a pumping light having an unpolarized state.

3. A Raman pumping method comprising:

outputting a pumping light having a wavelength that periodically changes;

varying the light intensity of the pumping light according to the wavelength to improve the gain flatness of Raman gain caused by the pumping light over a signal bandwidth;

controlling the varying of the light intensity of the pumping light to be synchronized with changes in the wavelength of the pumping light,

splitting a portion of the pumping light having the controlled light intensity; and

converting the split portion of the pumping light into an electric signal,

wherein controlling the varying of the light intensity comprises outputting a control signal that controls the light intensity of the pumping light based on the electric signal.

4. A Raman pumping method comprising:

outputting a pumping light having a wavelength that periodically changes;

varying the light intensity of the pumping light according to the wavelength to improve the gain flatness of Raman gain caused by the pumping light over a signal bandwidth;

controlling the varying of the light intensity of the pumping light to be synchronized with changes in the wavelength of the pumping light, wherein the outputting the control signal comprises:

outputting a first pumping light having a wavelength that periodically changes;

outputting a second pumping light having the same wavelength as that of the first pumping light and a polarization state orthogonal to that of the first pumping light; and

coupling the first pumping light and the second pumping light and outputting a pumping light having an unpolarization state.

Assignments (4)
ASSIGNMENT OF ASSIGNOR'S INTEREST Recorded May 15, 2013
From: ELECTRONICS AND TELECOMMUNICATIONS RESEARCH INSTITUTE
To: INTELLECTUAL DISCOVERY CO. LTD.
Reel/Frame 030418/0587 →
ASSIGNMENT OF ASSIGNOR'S INTEREST Recorded Oct 16, 2012
From: IPG ELECTRONICS 502 LIMITED
To: ELECTRONICS AND TELECOMMUNICATIONS RESEARCH INSTITUTE
Reel/Frame 029134/0699 →
ASSIGNMENT OF ONE HALF (1/2) OF ALL OF ASSIGNORS' RIGHT, TITLE AND INTEREST Recorded Nov 3, 2009
From: ELECTRONICS AND TELECOMMUNICATIONS RESEARCH INSTITUTE
To: IPG ELECTRONICS 502 LIMITED
Reel/Frame 023456/0363 →
ASSIGNMENT OF ASSIGNOR'S INTEREST Recorded Apr 28, 2004
From: CHANG, SUN HYOK; CHUNG, HEE SANG; HAN, JIN SOO; JUNG, JI SUNG; PARK, HEUK; LEE, WON KYOUNG; LEE, HYUN JAE
To: ELECTRONICS AND TELECOMMUNICATIONS RESEARCH INSTITUTE
Reel/Frame 015289/0115 →