IP Library Granted Patent US 7,190,875
Granted Patent B2
US 7,190,875 · App. 11/152,393 · Granted Mar 13, 2007

Fiber waveguide formed from chalcogenide glass and polymer

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 7,190,875
App. No.
11/152,393
Granted
Mar 13, 2007
Kind
B2
Abstract

In general, in one aspect, the disclosure features a fiber waveguide having a waveguide axis, including a core extending along the waveguide axis and a confinement region extending along the waveguide axis surrounding the core. The confinement region includes a periodic structure along a radial direction extending from the waveguide axis and each period in the periodic structure includes a layer of a chalcogenide glass and a layer of a polymer.

Claims (29)

1. A fiber waveguide having a waveguide axis, comprising:

a core extending along the waveguide axis; and

a confinement region extending along the waveguide axis surrounding the core, the confinement region comprising a periodic structure along a radial direction extending from the waveguide axis;

wherein each period in the periodic structure comprises a layer of a chalcogenide glass and a layer of a polymer.

2. The fiber waveguide of claim 1 , wherein the core is hollow.

3. The fiber waveguide of claim 1 , wherein each period in the periodic structure comprises more than two layers.

4. The fiber waveguide of claim 3 , wherein each period in the periodic structure comprises three layers.

5. The fiber waveguide of claim 1 , wherein the confinement region has a refractive index profile that varies discontinuously along the radial direction extending from the waveguide axis.

6. The fiber waveguide of claim 1 , wherein the periodic structure forms a Bragg reflector for radiation at a wavelength λ.

7. The fiber waveguide of claim 1 , wherein the chalcogenide glass is selected from the group consisting of As—Se, Ge—Se, As—Te, Sb—Se, As—S—Se, S—Se—Te, As—Se—Te, As—S—Te, Ge—S—Te, Ge—Se—Te, Ge—S—Se, As—Ge—Se, As—Ge—Te, As—Se—Pb, As—Se—Tl, As—Te—Tl, As—Se—Ga, and Ge—Sb—Se.

8. The fiber waveguide of claim 1 , wherein the chalcogenide glass comprises an element selected from the group consisting of boron, aluminum, silicon, phosphorus, sulfur, gallium, arsenic, indium, tin, antimony, thallium, lead, bismuth, cadmium, lanthanum, fluorine, chlorine, bromine, and iodine.

9. The fiber waveguide of claim 1 , wherein the polymer is a polymer selected from the group consisting of carbonate-, sulfone-, etherimid-, acrylate-families, and fluoropolymers.

10. The fiber waveguide of claim 1 , wherein the chalcogenide glass has a refractive index n 1 , the polymer has a refractive index n 2 , and |n 1 −n 2 |≧0.35.

11. The fiber waveguide of claim 1 , wherein the chalcogenide glass has a refractive index n 1 , the polymer has a refractive index n 2 , and |n 1 −n 2 |≧0.5.

12. The fiber waveguide of claim 1 , wherein the chalcogenide glass and the polymer can be co-drawn at a temperature, T d .

13. The fiber waveguide of claim 1 , wherein the chalcogenide glass has a working temperature, T w , and a softening temperature, T s , and the polymer has a viscosity, η 2 , that varies as a function of temperature, T, and η 2 at T w is at least 10 3 Poise and no more than 10 6 Poise, and η 2 at T s is at least 10 5 Poise and no more than 10 13 Poise.

14. The fiber waveguide of claim 13 , wherein η 2 at T w is no more than 10 5 Poise.

15. The fiber waveguide of claim 13 , wherein η 2 at T s is at least 10 6 Poise.

16. The fiber waveguide of claim 15 , wherein η 2 at T s is at least 10 7 Poise.

17. The fiber waveguide of claim 13 , wherein η 2 at T s is no more than 10 10 Poise.

18. The fiber waveguide of claim 17 , wherein η 2 at T s is no more than 10 8 Poise.

19. The fiber waveguide of claim 1 , wherein the chalcogenide layers and the polymer layers have an annular cross-section.

20. The fiber waveguide of claim 1 , wherein the fiber waveguide is a photonic crystal fiber.

21. The fiber waveguide of claim 20 , wherein the photonic crystal fiber is a Bragg fiber.

22. A fiber waveguide having a waveguide axis, comprising:

a core extending along the waveguide axis; and

a confinement region extending along the waveguide axis and configured to guide radiation along the waveguide axis through the core, the confinement region comprising: p 2 a first layer surrounding the core and extending along the waveguide axis, the first layer being formed from a chalcogenide glass having a refractive index n 1 ; and

a second layer surrounding the core and extending along the waveguide axis, the second layer being formed from polymer having a refractive index n 2 ,

wherein |n 1 −n 2 |≧0.35.

Assignments (6)
INTELLECTUAL PROPERTY SECURITY AGREEMENT Recorded Jul 31, 2018
From: OMNIGUIDE, INC.
To: SOLAR CAPITAL LTD., AS AGENT
Reel/Frame 046662/0671 →
RELEASE OF SECURITY INTEREST Recorded Mar 22, 2017
From: ROS ACQUISITION OFFSHORE LP
To: OMNIGUIDE, INC.
Reel/Frame 041679/0143 →
SECURITY AGREEMENT Recorded Aug 24, 2012
From: OMNIGUIDE, INC.
To: ROS ACQUISITION OFFSHORE LP
Reel/Frame 028841/0116 →
CHANGE OF NAME Recorded Jan 17, 2006
From: OMNIGUIDE COMMUNICATIONS, INC.
To: OMNIGUIDE, INC.
Reel/Frame 017198/0224 →
ASSIGNMENT OF ASSIGNOR'S INTEREST Recorded Sep 13, 2005
From: ANDERSON, EMILLA G.; FINK, YOEL; PRESSMAN, LORI; KING, WESLEY A.
To: OMNIGUIDE COMMUNICATIONS
Reel/Frame 016790/0071 →
ASSIGNMENT OF ASSIGNOR'S INTEREST Recorded Jun 14, 2005
From: ANDERSON, EMILIA G.; FINK, YOEL; PRESSMAN, LORI; KING, WESLEY A.
To: OMNIGUIDE COMMUNICATIONS INC.
Reel/Frame 016704/0596 →