IP Library Granted Patent US 8,823,250
Granted Patent B2
US 8,823,250 · App. 13/732,541 · Granted Sep 2, 2014

High efficiency incandescent lighting

Inventors: Peter Bermel (Cambridge, MA); Ognjen Ilic (Quincy, MA); Walker R. Chan (Cambridge, MA); Ahmet Musabeyoglu (Cambridge, MA); Aviv Ruben Cukierman (McLean, VA); Michael Robert Harradon (Cambridge, MA); Ivan Celanovic (Cambridge, MA); Marin Soljacic (Belmont, MA)
Assignee: Massachusetts Institute of Technology
H01K1/26H01K1/14B82Y20/00G02B1/005H01K1/04G02B5/208H01K1/325
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Quick Facts
Patent No.
US 8,823,250
App. No.
13/732,541
Granted
Sep 2, 2014
Kind
B2
Abstract

Incandescent lighting structure. The structure includes a thermal emitter that can, but does not have to, include a first photonic crystal on its surface to tailor thermal emission coupled to, in a high-view-factor geometry, a second photonic filter selected to reflect infrared radiation back to the emitter while passing visible light. This structure is highly efficient as compared to standard incandescent light bulbs.

Claims (17)

1. Incandescent lighting structure comprising a thermal emitter coupled to, in a high-view-factor geometry, a photonic filter selected to reflect infrared radiation back to the emitter while passing visible light, wherein the photonic filter includes two or more materials with different dielectric constants with more than 80 layers.

2. The lighting structure of claim 1 wherein the thermal emitter includes a photonic crystal on its surface to tailor thermal emission.

3. The lighting structure of claim 1 wherein the photonic filter is a 1D, 2D or 3D photonic crystal.

4. The lighting structure of claim 1 wherein the photonic filter has a phototonic band gap.

5. The lighting structure of claim 1 wherein the photonic filter surrounds the emitter.

6. The lighting structure of claim 1 wherein the emitter is a high melting point metal.

7. The lighting structure of claim 6 wherein the metal is tantalum or tungsten or molybdenum.

8. The lighting structure of claim 1 wherein the thermal emitter is disposed within a cylindrical photonic filter.

9. The lighting structure of claim 8 wherein the thermal emitter is a tightly wound coil.

10. The lighting structure of claim 1 wherein the emitter has an approximately rectangular shape sandwiched between two rectangular photonic crystal filters.

11. The lighting structure of claim 10 wherein the photonic crystal filters are disposed with respect to the emitter to assure a view factor higher than 85%.

12. The lighting structure of claim 1 wherein the photonic filter forms a rugate filter.

13. The lighting structure of claim 12 wherein the rugate filter comprises silicon dioxide and tantalum pentoxide.

14. The lighting structure of claim 12 wherein the rugate filter includes 48 alternating layers of silicon dioxide and tantalum pentoxide.

15. The lighting structure of claim 10 wherein the emitter includes closely spaced radiator channels.

16. The lighting structure of claim 1 wherein emitter temperature is higher than 1600 degrees C.

17. The lighting structure of claim 2 wherein the photonic crystal tailors the thermal emission to enhance visible light emission and to suppress infrared emission.

Assignments (2)
CONFIRMATORY LICENSE Recorded Jun 3, 2013
From: MASSACHUSETTS INSTITUTE OF TECHNOLOGY
To: ENERGY, UNITED STATES DEPARTMENT OF
Reel/Frame 030583/0633 →
ASSIGNMENT OF ASSIGNOR'S INTEREST Recorded Mar 26, 2013
From: SOLJACIC, MARIN; BERMEL, PETER; CELANOVIC, IVAN; CHAN, WALKER; CUKIERMAN, AVIV; HARRADON, MICHAEL ROBERT; ILIC, OGNJEN; MUSABEYOGLU, AHMET
To: MASSACHUSETTS INSTITUTE OF TECHNOLOGY
Reel/Frame 030083/0610 →
Continuity (2)
Provisional Application 61583312 · Jan 5, 2012
Related Publication 20140042890A1 · Feb 13, 2014