IP Library Granted Patent US 9,019,591
Granted Patent B2
US 9,019,591 · App. 12/530,784 · Granted Apr 28, 2015

Burst mode rare earth-doped fiber amplifier

Inventors: Yoshinari Awaji (Koganei, JP); Hideaki Furukawa (Koganei, JP); Naoya Wada (Koganei, JP); Ray Man (Kowloon, HK); Peter Chan (Kowloon, HK); Eddie Kong (Kowloon, HK)
Assignees: National Institute of Information and communications Technology; Amonics Limited
H04B10/296H01S3/06729H01S3/06758H01S3/1608H04B10/2941
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Quick Facts
Patent No.
US 9,019,591
App. No.
12/530,784
Granted
Apr 28, 2015
Kind
B2
Abstract

It is an object of the present invention to provide a rare earth doped fiber whose transient response is suppressed and an optical amplifier for optical packet communication having a good characteristic even if there is little traffic. The above-mentioned problem is solved by an optical amplifier for optical packet communication comprising a first rare earth doped fiber (EDFA) having an active region whose diameter is between 3.4 μm and 10 μm, inclusive, an intermediate gain equalizing filter, and a second EDF, wherein the first EDFA is shorter than the second EDFA, and wherein the intermediate gain equalizing filter adjusts the intensity of each wavelength channel so as to equalize the light intensity of each wavelength channel having transmitted through the second EDF.

Claims (9)

1. A method for amplifying an intensity of an optical packet signal using an amplifier for optical packet communication comprising a rare earth doped fiber having an active region whose diameter is between 6 μm and 10 μm, inclusive, the length of the rare earth doped fiber being between 1 m and 3 m, inclusive, the numerical aperture of the rare earth doped fiber is less than or equal to 0.2, the method comprising the steps of:

inputting an optical packet to the fiber amplifier; and

amplifying the intensity of the optical packet input to the fiber amplifier.

2. A method for amplifying an optical packet comprising, in this order, the steps of:

the optical packet entering a first rare earth doped fiber;

the optical packet entering a gain equalizing filter which is connected to the first rare earth doped fiber; and

the optical packet entering a second rare earth doped fiber which is connected to the gain equalizing filter;

wherein the gain equalizing filter adjusts the intensity of each wavelength channel of the optical packet so as to equalize the light intensity of each wavelength channel output from the second rare earth doped fiber and compensates gain excursion of the first and the second rare earth doped fiber to each wavelength channel of the optical packet.

3. The method in accordance with claim 1 , wherein the rare earth doped fiber is a single mode fibre.

Assignments (1)
ASSIGNMENT OF ASSIGNOR'S INTEREST Recorded Oct 21, 2009
From: AWAJI, YOSHINARI; FURUKAWA, HIDEAKI; WADA, NAOYA; MAN, RAY; CHAN, PETER; KONG, EDDIE
To: NATIONAL INSTITUTE OF INFORMATION AND COMMUNICATIONS TECHNOLOGY; AMONICS LIMITED
Reel/Frame 023402/0791 →
Priority Claims (3)
JP 2007-061784 · Mar 12, 2007 · national
JP 2007-120398 · Apr 30, 2007 · national
JP 2008-027372 · Feb 7, 2008 · national
Continuity (1)
Related Publication 20100221012A1 · Sep 2, 2010