IP Library Granted Patent US 7,440,176
Granted Patent B2
US 7,440,176 · App. 11/707,467 · Granted Oct 21, 2008

Bi-directionally pumped optical fiber lasers and amplifiers

Assignee: Newport Corporation
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Quick Facts
Patent No.
US 7,440,176
App. No.
11/707,467
Granted
Oct 21, 2008
Kind
B2
Abstract

An optical system including a gain material pumped by pump energy bands delivered to the gain material from different directions and separated sufficiently to prevent crosstalk between pump energy sources. Embodiments of the pump energy sources may be configured to pump the gain material with pump energy bands that correspond to absorption bands of the gain material.

Claims (25)

1. A method of pumping an optical fiber laser system, comprising:

providing an optical fiber laser system having a double clad optical fiber element with an elongate core comprising gain material, a first cladding disposed about the core and a second cladding disposed about the first cladding, and having two reflective elements optically coupled to the optical fiber element forming a laser cavity;

wavelength locking a first pump energy band emitted from a first pump energy source with a volume Bragg grating;

injecting wavelength locked pump energy of the first pump energy band into the first cladding of the optical fiber element in a first direction;

wavelength locking a second pump energy band emitted from a second pump energy source with a volume Bragg grating with a wavelength band of the second pump energy band sufficiently separated from a wavelength band of the first pump energy band to prevent crosstalk between the first pump energy source and the second pump energy source and with the first pump enemy band and the second pump energy band disposed within a single absorption band of the gain material of the elongate core; and

injecting wavelength locked pump energy of the second pump energy band into the first cladding of the optical fiber element in a second direction different from the first direction.

2. The method of claim 1 wherein the full width half-maximum of the first pump energy band is narrowed to less than about 2.0 nm.

3. The method of claim 1 wherein first direction and second direction are substantially opposite to each other and the first direction is directed substantially toward the second pump energy source and the second direction is directed substantially toward the first pump energy source.

4. A method of pumping an optical fiber amplifier system, comprising:

providing an optical fiber amplifier system having a double clad optical fiber element with an elongate core comprising gain material, a first cladding disposed about the core and a second cladding disposed about the first cladding;

wavelength locking a first pump energy band emitted from a first pump energy source with a volume Brag grating;

injecting wavelength locked pump energy of the first pump energy band into the first cladding of the optical fiber element in a first direction;

wavelength locking a second pump energy band emitted from a second pump energy source with a volume Bragg grating with a wavelength band of the second pump energy band sufficiently separated from a wavelength band of the first pump energy band to prevent crosstalk between the first pump energy source and the second pump energy source and with the first pump energy band and the second pump energy band disposed within a single absorption band of the gain material of the elongate core; and

injecting wavelength locked pump energy of the second pump energy band into the first cladding of the optical fiber element in a second direction different from the first direction.

5. The method of claim 4 wherein the full width half-maximum of the first pump energy band is narrowed to less than about 2.0 nm.

6. The method of claim 4 wherein first direction and second direction are substantially opposite to each other and the first direction is directed substantially toward the second pump energy source and the second direction is directed substantially toward the first pump energy source.

7. An optical gain system, comprising:

an optical fiber amplifier system having a double clad optical fiber element with an elongate core comprising gain material, a first cladding disposed about the core and a second cladding disposed about the first cladding;

a first pump energy source configured to emit pump energy into the first cladding from a first direction;

a first volume Bragg grating disposed in an optical path between the first pump energy source and the first cladding and configured to wavelength lock pump energy emitted from the first pump energy source to a first pump energy band;

a second pump energy source configured to emit pump energy into the first cladding from a second direction different from the first direction; and

a second volume Bragg grating disposed in an optical path between the second pump energy source and the first cladding and configured to wavelength lock pump energy emitted from the second pump energy source to a second pump energy band sufficiently separated from the first pump energy band to prevent crosstalk between the first pump energy source and the second pump energy source and with the first pump enemy band and the second pump energy band disposed within a single absorption band of the gain material of the elongate core.

8. The system of claim 7 wherein the pump energy sources comprise diode pump sources.

9. The system of claim 8 wherein the diode pump sources comprise multi-mode diode pump sources.

10. The system of claim 7 wherein the first direction is substantially opposite the second direction and the first direction is directed substantially toward the second pump energy source and the second direction is directed substantially toward the first pump energy source.

Assignments (13)
RELEASE OF SECURITY INTEREST Recorded Aug 24, 2022
From: BARCLAYS BANK PLC
To: MKS INSTRUMENTS, INC.; NEWPORT CORPORATION; ELECTRO SCIENTIFIC INDUSTRIES, INC.
Reel/Frame 063009/0001 →
RELEASE OF SECURITY INTEREST Recorded Aug 24, 2022
From: BARCLAYS BANK PLC
To: MKS INSTRUMENTS, INC.; NEWPORT CORPORATION; ELECTRO SCIENTIFIC INDUSTRIES, INC.
Reel/Frame 062739/0001 →
CORRECTIVE ASSIGNMENT TO CORRECT THE REMOVE U.S. PATENT NO.7,919,646 PREVIOUSLY RECORDED ON REEL 048211 FRAME 0312. ASSIGNOR(S) HEREBY CONFIRMS THE PATENT SECURITY AGREEMENT (ABL). Recorded Jan 14, 2021
From: ELECTRO SCIENTIFIC INDUSTRIES, INC.; MKS INSTRUMENTS, INC.; NEWPORT CORPORATION
To: BARCLAYS BANK PLC, AS COLLATERAL AGENT
Reel/Frame 055668/0687 →
RELEASE OF SECURITY INTEREST Recorded Feb 1, 2019
From: DEUTSCHE BANK AG NEW YORK BRANCH
To: MKS INSTRUMENTS, INC.; NEWPORT CORPORATION
Reel/Frame 048226/0095 →
PATENT SECURITY AGREEMENT (ABL) Recorded Feb 1, 2019
From: ELECTRO SCIENTIFIC INDUSTRIES, INC.; MKS INSTRUMENTS, INC.; NEWPORT CORPORATION
To: BARCLAYS BANK PLC, AS COLLATERAL AGENT
Reel/Frame 048211/0312 →
SECURITY AGREEMENT Recorded May 4, 2016
From: MKS INSTRUMENTS, INC.; NEWPORT CORPORATION
To: BARCLAYS BANK PLC; BARCLAYS BANK PLC
Reel/Frame 038663/0139 →
SECURITY AGREEMENT Recorded May 4, 2016
From: MKS INSTRUMENTS, INC.; NEWPORT CORPORATION
To: DEUTSCHE BANK AG NEW YORK BRANCH
Reel/Frame 038663/0265 →
RELEASE OF SECURITY INTEREST Recorded Apr 29, 2016
From: JPMORGAN CHASE BANK N.A., AS ADMINISTRATIVE AGENT
To: NEWPORT CORPORATION
Reel/Frame 038581/0112 →
SECURITY AGREEMENT Recorded Jul 22, 2013
From: NEWPORT CORPORATION
To: JPMORGAN CHASE BANK, NATIONAL ASSOCIATION, AS ADMINISTRATIVE AGENT
Reel/Frame 030847/0005 →
RELEASE OF SECURITY INTEREST Recorded Jul 19, 2013
From: BANK OF AMERICA, N.A., AS ADMINISTRATIVE AGENT
To: NEWPORT CORPORATION
Reel/Frame 030833/0421 →
NOTICE OF GRANT OF SECURITY INTEREST IN PATENTS Recorded Oct 5, 2011
From: NEWPORT CORPORATION
To: BANK OF AMERICA, N.A., AS ADMINISTRATIVE AGENT
Reel/Frame 027019/0462 →
ASSIGNMENT OF ASSIGNOR'S INTEREST Recorded Jul 24, 2007
From: FIDRIC, BERNARD
To: NEWPORT CORPORATION
Reel/Frame 019604/0403 →
ASSIGNMENT OF ASSIGNOR'S INTEREST Recorded Feb 15, 2007
From: FIDRIC, BERNARD
To: NEWPORT CORPORATION
Reel/Frame 019012/0473 →
Continuity (2)
Provisional Application 6077492500 · Feb 17, 2006
Related Publication 20070236781A1 · Oct 11, 2007