IP Library Granted Patent US 9,405,136
Granted Patent B2
US 9,405,136 · App. 14/296,874 · Granted Aug 2, 2016

Magnetic-free non-reciprocal devices exhibiting non-reciprocity through angular momentum biasing

Inventors: Andrea Alu (Austin, TX); Dimitrios Sounas (Austin, TX); Nicholas Estep (Austin, TX)
Assignee: Board of Regents, The University of Texas System
G02F1/0136G02F1/011G02F1/0955G02F2202/30G02F2202/32G02F2203/15
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Quick Facts
Patent No.
US 9,405,136
App. No.
14/296,874
Granted
Aug 2, 2016
Kind
B2
Abstract

A non-reciprocal device incorporating metamaterials which exhibit non-reciprocity through angular momentum biasing. The metamaterial, such as a ring resonator, is angular-momentum biased. This is achieved by applying a suitable mechanical or spatio-temporal modulation to resonant inclusions of the metamaterial, thereby producing strong non-reciprocity. In this manner, non-reciprocity can be produced without requiring the use of large and bulky magnets to produce a static magnetic field. The metamaterials of the present invention can be realized by semiconducting and/or metallic materials which are widely used in integrated circuit technology, and therefore, contrary to magneto-optical materials, can be easily integrated into the non-reciprocal devices and large microwave or optical systems. The metamaterials of the present invention can be compact at various frequencies due to the enhanced wave-matter interaction in the constituent resonant inclusions. Additionally, by using the metamaterials of the present invention, the power consumed in the biasing network is drastically reduced.

Claims (10)

1. A non-reciprocal device comprising:

a ring of three or more resonators coupled together, wherein each of said three or more resonators is modulated in time with a different phase shift with respect to each other and operable at either microwave, light or sound waves.

2. The non-reciprocal device as recited in claim 1 , wherein each of said three or more resonators comprises an LC circuit.

3. The non-reciprocal device as recited in claim 1 , wherein said ring is coupled to two or more external ports.

4. The non-reciprocal device as recited in claim 3 , wherein said two or more external ports are configured to provide access to radio frequency and modulation signals.

5. The non-reciprocal device as recited in claim 4 , wherein said modulation signals are generated by a waveform generator, wherein an output of said generator is split evenly into three or more signals which are phase shifted with respect to each other via phase shifters.

6. The non-reciprocal device as recited in claim 1 , wherein said three or more resonators are coupled together via capacitances.

7. The non-reciprocal device as recited in claim 1 , wherein each of said three or more resonators is modulated via capacitance modulation, wherein a varactor diode is configured to provide said capacitance modulation.

8. The non-reciprocal device as recited in claim 7 , wherein said varactor diode is biased by a direct current signal providing a reverse bias to said varactor diode to actively control a static resonance frequency of said three or more resonators.

9. The non-reciprocal device as recited in claim 7 , wherein said varactor diode is biased by a radio frequency signal providing said modulation.

Assignments (3)
CONFIRMATORY LICENSE Recorded Dec 9, 2015
From: UNIVERSITY OF TEXAS, AUSTIN
To: DEFENSE THREAT REDUCTION AGENCY; DEPT. OF DEFENSE, UNITED STATES GOVERNMENT
Reel/Frame 037254/0520 →
CONFIRMATORY LICENSE Recorded Mar 16, 2015
From: THE UNIVERSITY OF TEXAS AT AUSTIN
To: DEFENSE THREAT REDUCTION AGENCY; DEPT. OF DEFENSE; UNITED STATES GOVERNMENT
Reel/Frame 035206/0689 →
ASSIGNMENT OF ASSIGNOR'S INTEREST Recorded Jun 5, 2014
From: ALU, ANDREA; SOUNAS, DIMITRIOS; ESTEP, NICHOLAS
To: BOARD OF REGENTS, THE UNIVERSITY OF TEXAS SYSTEM
Reel/Frame 033038/0731 →
Continuity (2)
Provisional Application 61857580 · Jul 23, 2013
Related Publication 20150030280A1 · Jan 29, 2015