IP Library Granted Patent US 10,634,842
Granted Patent B2
US 10,634,842 · App. 15/959,128 · Granted Apr 28, 2020

Multi-clad optical fiber

Inventors: Mark S. Zediker (Castle Rock, CO); Robert A. Stegeman (Denver, CO); James P. Tucker (Centennial, CO); Jean-Philippe Feve (Monument, CO)
Assignee: Nuburu, Inc.
G02B6/028G02B6/03605G02B6/03683G02B6/262H01S3/06708G02B6/0281
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Quick Facts
Patent No.
US 10,634,842
App. No.
15/959,128
Granted
Apr 28, 2020
Kind
B2
Abstract

A multi-clad optical fiber design is described in order to provide low optical loss, a high numerical aperture (NA), and high optical gain for the fundamental propagating mode, the linearly polarized (LP) 01 mode in the UV and visible portion of the optical spectrum. The optical fiber design may contain dopants in order to simultaneously increase the optical gain in the core region while avoiding additional losses during the fiber fabrication process. The optical fiber design may incorporate rare-earth dopants for efficient lasing. Additionally, the modal characteristics of the propagating modes in the optical core promote highly efficient nonlinear mixing, providing for a high beam quality (M 2 <1.5) output of the emitted light.

Claims (23)

1. A fused silica based, multi-clad optical fiber comprising:

(a) a silica glass;

(b) a core surrounded by a first cladding layer, whereby the fused silica based, multi-clad optical fiber has a high NA; whereby the fused silica based, multi-clad optical fiber is configured to convert low beam quality visible or UV light having an M 2 >1.5, to high beam quality light having an M 2 <1.5;

(c) the core comprising a GRIN structure; and,

(d) a hydrogen dopant;

(e) whereby the fused silica based, multi-clad optical fiber is configured to provide low propagation losses in the visible or UV portions of the optical spectrum.

2. The fiber of claim 1 , wherein the GRIN structure comprises components selected from the group consisting of modifiers to the silica glass to alter the refractive index, structures comprised of the silica glass to alter the effective refractive index, and modifiers to the silica glass to shield the core from UV radiation.

3. The fibers of claim 1 or 2 , wherein the first cladding is surround by a second and the second cladding is surround by an outer cladding, wherein each of the claddings comprises fused silica glass.

4. The fibers of claim 1 or 2 , wherein the first cladding is surround by a second and the second cladding is surround by an outer cladding, wherein each of the claddings comprises fused silica glass with chemical modifiers.

5. The fiber of claim 1 , wherein the low beam quality light is converted to the high beam quality light through direct lasing of rare-earth ions.

6. The fiber of claim 1 , wherein the low beam quality light is converted to the high beam quality light through energy exchange processes induced by nonlinear optics.

7. The optical fiber of claim 1 , wherein the optical propagation losses are low in both the visible and UV portion of the spectrum.

8. The fiber of claim 1 , wherein the GRIN structure comprises components selected from the group consisting of phosphorous, aluminum, and aluminum and phosphorous.

9. The fiber of claim 1 , wherein the GRIN structure comprises components selected from the group consisting of a material that increases the refractive index of pure fused silica and does not solarize when irradiated by blue light.

10. The optical fiber of claim 9 , configured to exhibits the highest nonlinear gain to the fundamental mode of the fiber, the LP01 mode.

11. The optical fiber of claim 1 , comprising a second cladding layer surrounding the first cladding layer, wherein the second cladding layer has an effective refractive index which is lower than the first cladding layer refractive index.

12. The optical fiber of claim 11 , wherein the second cladding layer comprises modifiers to the glass matrix thereby lowering the refractive index of the second cladding layer to less than the index of refraction for the first cladding layer.

13. The optical fiber of claim 11 , wherein the second cladding layer comprises a non-solid structure thereby lowering the refractive index of the second cladding layer to less than the index of refraction for the first cladding layer.

14. The optical fiber of claim 11 , wherein the second cladding layer comprises a low index polymer thereby lowering the refractive index of the second cladding layer to less than the index of refraction for the first cladding layer.

15. An optical fiber according to claim 1 , comprising a third cladding layer and second cladding layer, wherein the effective index of the third cladding layer is higher than the effective index of the second cladding layer.

16. An optical fiber according to claim 11 , comprising a third cladding layer, wherein the effective index of the third cladding layer is higher than an effective index of the second cladding layer.

17. The optical fibers of claim 11 or 15 , wherein one or more of the first cladding layer, the second cladding layer, and the third cladding layer comprises a chemical modifier to protect the first claddings and core from UV irradiation.

18. An optical fiber according to claim 11 , comprising a third cladding layer, wherein the effective index of the third cladding layer is lower than an effective index of the second cladding layer.

Assignments (4)
TRANSFER STATEMENT Recorded Apr 28, 2025
From: NUBURU, INC.
To: BLUE 425 LLC
Reel/Frame 071095/0702 →
SECURITY INTEREST Recorded Jan 8, 2024
From: NUBURU, INC.
To: WILMINGTON SAVINGS FUND SOCIETY, FSB; ANSON INVESTMENTS MASTER FUND LP
Reel/Frame 066222/0257 →
ASSIGNMENT OF ASSIGNOR'S INTEREST Recorded Mar 16, 2020
From: ZEDIKER, MARK S; TUCKER, JAMES P; FEVE, JEAN-PHILIPPE
To: NUBURU, INC.
Reel/Frame 052124/0641 →
EMPLOYEE AGREEMENT ASSIGNMENT Recorded Mar 16, 2020
From: STEGEMAN, ROBERT
To: NUBURU, INC.
Reel/Frame 052166/0918 →
Continuity (2)
Provisional Application 62488440 · Apr 21, 2017
Related Publication 20190025502A1 · Jan 24, 2019