IP Library Granted Patent US 11,886,052
Granted Patent B2
US 11,886,052 · App. 16/921,531 · Granted Jan 30, 2024

Adjustable beam characteristics

Inventors: Dahv A. V. Kliner (Portland, OR); Roger Farrow (Vancouver, WA)
Assignee: nLIGHT, Inc
G02F1/0115B22F3/1109B22F3/24B22F10/20B22F10/31B22F10/36B23K26/032B23K26/034B23K26/0342B23K26/062B23K26/064B23K26/067B23K26/073B23K26/21B23K26/342B23K26/38B23K26/704B29C48/08B29C64/153B29C64/264B33Y10/00B33Y30/00B33Y50/02G02B6/02G02B6/021G02B6/023G02B6/02042G02B6/02347G02B6/02371G02B6/02395G02B6/036G02B6/03611G02B6/03694G02B6/14G02B6/255G02B6/4203G02B6/4206G02B27/0927G02B27/0933G02B27/0994H01S5/0085B22F12/44B22F12/49G02B6/02004G02B6/0281G02B6/0288G02B6/0365G02B6/03616G02B6/03627G02B6/03633G02B6/03638G02B6/03688G02B6/262G02B6/4296G02B26/101G02B2006/12121G02F1/0151
View Patent ↗
Loading inventors, assignments & file history…
Monitor This Case
Get email alerts when status or documents change.
Order Certified Copies
Most orders are placed with the USPTO same day — all within 24 business hours.
Order via The Patent Place →
Pre-filled with this patent's details
Quick Facts
Patent No.
US 11,886,052
App. No.
16/921,531
Granted
Jan 30, 2024
Kind
B2
Abstract

Disclosed herein are methods, apparatus, and systems for providing an optical beam delivery system, comprising an optical fiber including a first length of fiber comprising a first RIP formed to enable, at least in part, modification of one or more beam characteristics of an optical beam by a perturbation assembly arranged to modify the one or more beam characteristics, the perturbation assembly coupled to the first length of fiber or integral with the first length of fiber, or a combination thereof and a second length of fiber coupled to the first length of fiber and having a second RIP formed to preserve at least a portion of the one or more beam characteristics of the optical beam modified by the perturbation assembly within one or more first confinement regions. The optical beam delivery system may include an optical system coupled to the second length of fiber including one or more free-space optics configured to receive and transmit an optical beam comprising the modified one or more beam characteristics.

Claims (22)

1. An optical beam delivery system, comprising:

a length of optical fiber comprising a first confinement region having a central core and a second confinement region having an annular core encompassing the first confinement region; and

a perturbation device operable to perturb the length of optical fiber to shift a beam propagating in the central core from the central core to the second confinement region to form a donut-shaped intensity distribution, wherein the second confinement region maintains the donut-shaped intensity distribution.

2. An optical beam delivery system, comprising:

a length of optical fiber comprising a first confinement region having a central core and a second confinement region having an annular core encompassing the first confinement region; and

a perturbation device operable to perturb the length of optical fiber to shift a beam from the central core to the second confinement region to form a donut-shaped intensity distribution, wherein the second confinement region maintains the donut-shaped intensity distribution wherein the length of optical fiber includes a first length of optical fiber and a second length of optical fiber, wherein the first length of optical fiber has a third confinement region, the second length of optical fiber has the first confinement region and the second confinement region, and the first length of optical fiber is coupled to provide guiding from the first length of optical fiber to the second length of optical fiber.

3. The optical beam delivery system of claim 2 , wherein the perturbation device is situated to perturb the first length of optical fiber.

4. The optical beam delivery system of claim 2 , wherein the perturbation device is situated to perturb the second length of optical fiber.

5. The optical beam delivery system of claim 2 , wherein the perturbation device is situated to perturb the first length of optical fiber and the second length of optical fiber.

6. The optical beam delivery system of claim 2 , wherein the length of optical fiber further comprises a third confinement region having an outer annular core encompassing the second confinement region and the perturbation device is situated to perturb the length of optical fiber to shift the beam from the central core to the third confinement region to form a donut-shaped intensity distribution, wherein the third confinement region maintains the donut-shaped intensity distribution.

7. The optical beam delivery system of claim 2 , further comprising an annular region situated between the first confinement region and the second confinement region, and having a refractive index lower than a refractive index of the first confinement region and the second confinement region.

8. A method, comprising:

in a length of optical fiber comprising a first confinement region having a central core and a second confinement region having an annular core encompassing the first confinement region, perturbing a beam propagating in the central core to shift the beam from the central core to the second confinement region to form a donut-shaped intensity distribution; and

maintaining the donut-shaped intensity distribution in the second confinement region.

9. The method of claim 8 , wherein the donut-shaped intensity distribution is directed from the length of optical fiber to weld or cut a work piece.

10. A method, comprising:

in a length of optical fiber comprising a first confinement region having a central core and a second confinement region having an annular core encompassing the first confinement region, perturbing a beam to shift the beam from the central core to the second confinement region to form a donut-shaped intensity distribution; and

maintaining the donut-shaped intensity distribution in the second confinement region, wherein the length of optical fiber includes a first length of optical fiber and a second length of optical fiber, wherein the first length of optical fiber has a third confinement region, the second length of optical fiber has the first confinement region and the second confinement region, and the first length of optical fiber is coupled to guide the beam from the first length of optical fiber to the second length of optical fiber.

11. The method of claim 10 , wherein the beam is perturbed in the first length of optical fiber.

12. The method of claim 10 , wherein the beam is perturbed in the second length of optical fiber.

13. The method of claim 10 , wherein the beam is perturbed in the first length of optical fiber and the second length of optical fiber.

14. The method of claim 10 , wherein the donut-shaped intensity distribution is directed from the length of optical fiber to weld or cut a work piece.

Assignments (3)
SECURITY INTEREST Recorded May 19, 2022
From: NLIGHT, INC.
To: PACIFIC WESTERN BANK
Reel/Frame 059963/0032 →
ASSIGNMENT OF ASSIGNOR'S INTEREST Recorded Aug 3, 2020
From: KLINER, DAHV A.V.; FARROW, ROGER
To: NLIGHT PHOTONICS CORPORATION
Reel/Frame 053387/0781 →
CHANGE OF NAME Recorded Aug 3, 2020
From: NLIGHT PHOTONICS CORPORATION
To: NLIGHT, INC.
Reel/Frame 053388/0934 →
Continuity (7)
Continuation 16402147 · May 2, 2019
Continuation PCTUS2017034848 · May 26, 2017
Continuation 15607411 · May 26, 2017
Continuation 15607410 · May 26, 2017
Continuation 15607399 · May 26, 2017
Provisional Application 62401650 · Sep 29, 2016
Related Publication 20200333640A1 · Oct 22, 2020
Cited By (1)
US 12,237,642