IP Library Granted Patent US 6,842,467
Granted Patent B1
US 6,842,467 · App. 09/521,639 · Granted Jan 11, 2005

Fiber optic laser transmitter with reduced near end reflections

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Quick Facts
Patent No.
US 6,842,467
App. No.
09/521,639
Granted
Jan 11, 2005
Kind
B1
Abstract

A laser apparatus, which generates laser light to be transmitted through an optical transmission system includes a laser that emits light that is substantially linearly polarized, a housing in which the laser is mounted, and a quarter wave retarder plate. The quarter wave retarder plate is disposed so that the emitted laser light passes through the quarter wave retarder plate prior to transmission of the emitted laser light through the optical transmission system. The quarter wave retarder plate causing the emitted laser light to become circularly polarized with a predefined handedness. The quarter wave retarder plate is also disposed so that light reflected by the optical transmission system back toward the laser passes through the quarter wave retarder plate a second time prior to reaching the laser, causing the reflected light to become linearly polarized with a linear polarization that is orthogonal to the polarization state of the light emitted by the laser. In one embodiment, a linear polarizer is positioned adjacent a front face of the quarter wave retarder plate. The linear polarizer imposes a particular linear polarization orientation on the emitted laser light, and blocks the reflected light that passes through the quarter wave retarder plate because that light has a linear polarization that is orthogonal to the polarization axis of the linear polarizer.

Claims (46)

1. A laser apparatus for generating laser light to be transmitted through an optical transmission system, comprising:

a laser that emits light that is substantially linearly polarized when in use;

a quarter wave retarder plate that is positioned with respect to the laser so that:

light emitted by the laser is circularly polarized by the wave reader plate so as to have a predetermined handedness before reaching an optical transmission system; and

light reflected back toward the laser has a linear polarization, after passing through the quarter wave retarder plate a second time, eat is orthogonal to the linearly polarized light emitted by the laser; and

a linear polarizer that is positioned between the laser and the quarter wave retarder plate so as to:

permit the linearly polarized light emitted by the laser to pass through the linear polarizer; and

block light reflected back toward the laser by the optical transmission system that has a linear polarization that is orthogonal to the linearly polarized light emitted by the laser.

2. The laser apparatus as recited in claim 1 , wherein the linear polarizer is disposed adjacent to a surface of the quarter wave retarder plate facing the laser.

3. The laser apparatus as recited in claim 1 , further comprising a lens that is positioned so that the quarter wave retarder plate is disposed between the lens and the laser.

4. The laser apparatus as recited in claim 1 , further comprising a lens that is positioned between the quarter wave retarder plate and the laser.

5. The laser apparatus as recited in claim 1 , further comprising a hermetically scaled housing within which the laser is disposed, the housing having a window through which the light emitted by the laser is transmitted.

6. The laser apparatus as recited in claim 5 , further comprising a thin film antireflective coating on at least one surface of the window.

7. The laser apparatus as recited in claim 5 , the quarter wave retarder plate comprising a portion of the hermetically sealed housing.

8. The laser apparatus as recited in claim 7 , the quarter wave retarder plate comprising the window of the hermetically sealed housing.

9. The laser apparatus as recited in claim 7 , further comprising a thin film antireflective coating on a surface of the quarter wave retarder plate.

10. A laser apparatus for generating laser light to be transmitted through an optical transmission system, comprising:

a laser that emits light that is substantially linearly polarized when in use, the laser having an oscillation mode;

a quarter wave retarder plate that is positioned with respect to the laser so that:

light emitted by the laser is circularly polarized by the wave retarder plate so as to have a predetermined handedness before reaching an optical transmission system; and

light reflected back toward the laser has a linear polarization, after passing through the quarter wave retarder plate a second time, that is orthogonal to the linearly polarized light emitted by the laser;

wherein the laser apparatus does not include any polarizing element positioned between the laser and the quarter wave retarder plate so that light reflected back toward the laser that has a linear polarization that is orthogonal to the linearly polarized light emitted by the laser continues toward the laser unimpeded by any polarizing element but does not couple back onto the oscillation mode of the laser.

11. The laser apparatus as recited in claim 10 , further comprising a lens that is positioned so that the quarter wave retarder plate is disposed between the lens and the laser.

12. The laser apparatus as recited in claim 10 , further comprising a lens that is positioned between the quarter wave retarder plate and the laser.

13. The laser apparatus as recited in claim 10 , further comprising a hermetically sealed housing within which the laser is disposed, the housing having a window through which the light emitted by the laser is transmitted.

14. The laser apparatus as recited in claim 13 , further comprising a thin film antireflective coating on at least one surface of the window.

15. The laser apparatus as recited in claim 13 , the quarter wave retarder plate comprising a portion of the hermetically seated housing.

16. The laser apparatus as recited in claim 15 , the quarter wave retarder plate comprising the window of the hermetically sealed housing.

17. The laser apparatus as recited in claim 15 , further comprising a thin film antireflective coating on a surface of the quarter wave retarder plate.

18. A light emission and transmission system, comprising:

a laser that emits light that is substantially linearly polarized when in use, the laser having an oscillation mode;

an optical fiber positioned relative to the laser so that at least a majority of the light emitted by the laser is transmitted away from the laser; and

a quarter wave retarder plate positioned with respect to the laser so that:

light emitted by the laser is circularly polarized by the wave retarder plate so as to have a predetermined handedness before reaching the optical fiber; and

light reflected back toward the laser by the optical fiber has a linear polarization, after passing through the quarter wave retarder plate a second time, that is orthogonal to the linearly polarized light emitted by the laser so as to not couple back onto the oscillation mode of the laser.

19. A light emission and transmission system as recited in claim 18 , further comprising a lens positioned between the quarter wave retarder plate and the optical fiber.

20. A light emission and transmission system as recited in claim 18 , further comprising a lens that is positioned between the quarter wave retarder plate and the laser.

21. A light emission and transmission system as recited in claim 18 , further comprising a linear polarizer positioned between the laser and the quarter wave retarder plate so as to:

permit linearly polarized light emitted by the laser to pass therethrough; and

block light reflected back toward the laser by the optical fiber that has a linear polarization that is orthogonal to the linearly polarized light emitted by the laser.

22. A light emission and transmission system as recited in claim 21 , wherein the linear polarizer is disposed adjacent to a surface of the quarter wave retarder plate facing the laser.

23. A light emission and transmission system as recited in claim 18 , further comprising a hermetically sealed housing within which the laser is disposed, the housing having a window through which the light emitted by the laser is transmitted.

24. A light emission and transmission system as recited in claim 23 , further comprising a thin film antireflective coating on at least one surface of the window.

25. A light emission and transmission system as recited in claim 23 , the quarter wave retarder plate comprising a portion of the hermetically sealed housing.

26. A light emission and transmission system as recited in claim 25 , the quarter wave retarder plate comprising the window of the hermetically sealed housing.

27. A light emission and transmission system as recited in claim 25 , further comprising a thin film antireflective coating on a surface of the quarter wave retarder plate.

Assignments (3)
PATENT RELEASE AND REASSIGNMENT Recorded Jul 5, 2022
From: BANK OF AMERICA, N.A., AS ADMINISTRATIVE AGENT
To: II-VI INCORPORATED; MARLOW INDUSTRIES, INC.; EPIWORKS, INC.; LIGHTSMYTH TECHNOLOGIES, INC.; KAILIGHT PHOTONICS, INC.; COADNA PHOTONICS, INC.; OPTIUM CORPORATION; FINISAR CORPORATION; II-VI OPTICAL SYSTEMS, INC.; M CUBED TECHNOLOGIES, INC.; II-VI PHOTONICS (US), INC.; II-VI DELAWARE, INC.; II-VI OPTOELECTRONIC DEVICES, INC.; PHOTOP TECHNOLOGIES, INC.
Reel/Frame 060574/0001 →
ASSIGNMENT OF ASSIGNOR'S INTEREST Recorded Apr 1, 2020
From: FINISAR CORPORATION
To: II-VI DELAWARE, INC.
Reel/Frame 052286/0001 →
NOTICE OF GRANT OF SECURITY INTEREST IN PATENTS Recorded Sep 25, 2019
From: II-VI INCORPORATED; MARLOW INDUSTRIES, INC.; EPIWORKS, INC.; LIGHTSMYTH TECHNOLOGIES, INC.; KAILIGHT PHOTONICS, INC.; COADNA PHOTONICS, INC.; OPTIUM CORPORATION; FINISAR CORPORATION; II-VI OPTICAL SYSTEMS, INC.; M CUBED TECHNOLOGIES, INC.; II-VI PHOTONICS (US), INC.; II-VI DELAWARE, INC.; II-VI OPTOELECTRONIC DEVICES, INC.; PHOTOP TECHNOLOGIES, INC.
To: BANK OF AMERICA, N.A., AS ADMINISTRATIVE AGENT
Reel/Frame 050484/0204 →