IP Library Granted Patent US 8,280,210
Granted Patent B2
US 8,280,210 · App. 12/498,505 · Granted Oct 2, 2012

Apparatus employing multiferroic materials for tunable permittivity or permeability

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 8,280,210
App. No.
12/498,505
Granted
Oct 2, 2012
Kind
B2
Abstract

An apparatus has a waveguide that includes a multiferroic medium. A controller is configured to apply a mechanical strain or a control electric or magnetic field to the multiferroic medium. The multiferroic medium has a dielectric permittivity or magnetic permeability that is responsive to the strain or the control field.

Claims (37)

1. An apparatus, comprising:

a waveguide including a multiferroic medium including at least one ferroelectric domain and at least one ferromagnetic domain that shares an interface with said ferroelectric domain; and

a controller configured to apply a mechanical strain or a control electric or magnetic field to said multiferroic medium,

wherein said multiferroic medium has a dielectric permittivity or magnetic permeability that is responsive to said strain or said control field.

2. The apparatus as recited in claim 1 , wherein said waveguide is configured to propagate optical frequencies.

3. The apparatus as recited in claim 1 , wherein said waveguide is configured to propagate terahertz frequencies.

4. The apparatus as recited in claim 1 , wherein a transmission characteristic of said waveguide is changed in response to said strain or said control field.

5. The apparatus as recited in claim 1 , wherein said medium is a metamaterial over a first frequency range.

6. The apparatus as recited in claim 5 , wherein said medium behaves as a metamaterial over a different second frequency range in response to said strain or said control field.

7. An apparatus, comprising:

a plurality of unit cells, each unit cell including:

a multiferroic substrate; and

a reactive component supported by said substrate,

wherein said plurality of unit cells is configured to act as a metamaterial over a frequency range.

8. The apparatus of claim 7 , wherein said plurality is configured such that said frequency range changes in response to an applied electric or magnetic field.

9. The apparatus as recited in claim 7 , wherein said multiferroic substrate comprises a heterogeneous multiferroic material.

10. The apparatus as recited in claim 1 , wherein:

said at least one ferroelectric domain includes a first continuous material layer;

said at least one ferromagnetic domain includes a second continuous material layer; and

said first and second material layers share an interface.

11. The apparatus as recited in claim 10 , wherein said interface is about planar.

12. The apparatus as recited in claim 1 , wherein said at least one ferroelectric domain includes one of a plurality of ferroelectric layers and said at least one ferromagnetic domain includes one of a plurality of ferromagnetic layers, said ferroelectric layers alternate with said ferromagnetic layers, and each ferroelectric layer shares an interface with at least one of said ferromagnetic layers.

13. The apparatus as recited in claim 1 , wherein:

said multiferroic medium includes a plurality of non-contiguous ferroelectric domains and a plurality of non-contiguous ferroelectric domains; and

said ferroelectric domains each share an interface with at least one of said ferromagnetic domains.

14. The apparatus as recited in claim 13 , wherein each of said domains includes a crystalline lattice, and the crystalline lattices of said pluralities are oriented pseudo-randomly.

15. The apparatus as recited in claim 7 , wherein said multiferroic substrate comprises a multiferroic medium including at least one ferroelectric domain and at least one ferromagnetic domain that shares an interface with said ferroelectric domain.

16. The apparatus as recited in claim 15 , wherein:

said at least one ferroelectric domain includes a first continuous material layer;

said at least one ferromagnetic domain includes a second continuous material layer; and

said first and second material layers share an interface.

17. The apparatus as recited in claim 16 , wherein said interface is about planar.

18. The apparatus as recited in claim 15 , wherein said at least one ferroelectric domain includes one of a plurality of ferroelectric layers and said at least one ferromagnetic domain includes one of a plurality of ferromagnetic layers, said ferroelectric layers alternate with said ferromagnetic layers, and each ferroelectric layer shares an interface with at least one of said ferromagnetic layers.

19. The apparatus as recited in claim 15 , wherein:

said multiferroic medium includes a plurality of non-contiguous ferroelectric domains and a plurality of non-contiguous ferroelectric domains; and

said ferroelectric domains each share an interface with at least one of said ferromagnetic domains.

20. The apparatus as recited in claim 19 , wherein each of said domains includes a crystalline lattice, and the crystalline lattices of said plurality are oriented pseudo-randomly.

Assignments (2)
ASSIGNMENT OF ASSIGNOR'S INTEREST Recorded Jul 11, 2011
From: ALCATEL-LUCENT USA INC.
To: ALCATEL LUCENT
Reel/Frame 026568/0625 →
ASSIGNMENT OF ASSIGNOR'S INTEREST Recorded Jul 7, 2009
From: CHOWDHURY, AREF; RAMIREZ, ARTHUR PENN; SIEGRIST, THEO MAX
To: ALCATEL-LUCENT USA INCORPORATED
Reel/Frame 022920/0677 →