IP Library Granted Patent US 7,359,589
Granted Patent B2
US 7,359,589 · App. 11/418,082 · Granted Apr 15, 2008

Coupling electromagnetic wave through microcircuit

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Quick Facts
Patent No.
US 7,359,589
App. No.
11/418,082
Granted
Apr 15, 2008
Kind
B2
Abstract

A device includes a waveguide layer formed on a substrate. An ultra-small resonant structure emits electromagnetic radiation (EMR) in the waveguide layer. One or more circuits are formed on the waveguide layer and each operatively connected thereto to receive the EMR emitted by the ultra-small resonant structure. The waveguide layer may be transparent at wavelengths corresponding to wavelengths of the EMR emitted by the ultra-small resonant structure. The EMR may be visible light and may encode a data signal such as a clock signal.

Claims (34)

1. A device comprising:

a waveguide layer formed on a substrate;

an ultra-small resonant structure constructed and adapted to emit electromagnetic radiation (EMR) in said waveguide layer;

one or more circuits formed on said waveguide layer and each operatively connected thereto to receive the EMR emitted by the ultra-small resonant structure.

2. A device as in claim 1 wherein the waveguide layer is transparent at wavelengths corresponding to wavelengths of the EMR emitted by the ultra-small resonant structure.

3. A device as in claim 2 wherein the EMR is visible light.

4. A device as in claim 1 wherein the ultra-small resonant structure emits EMR which encodes a data signal.

5. A device as in claim 4 wherein the data signal comprises a clock signal.

6. A device as in claim 1 wherein the ultra-small resonant structure is constructed and adapted to emit electromagnetic radiation (EMR) in response to excitation by a beam of charged particles.

7. A device as in claim 6 wherein the charged particle beam comprises particles selected from the group comprising: electrons, positive ions, negative ions, positrons and protons.

8. A device as in claim 6 further comprising:

a source providing a charged particle beam.

9. A device as in claim 8 wherein said source of charged particles is selected from the group comprising:

an ion gun, a tungsten filament, a cathode, a planar vacuum triode, an electron-impact ionizer, a laser ionizer, a chemical ionizer, a thermal ionizer, and an ion-impact ionizer.

10. A device as in claim 1 wherein the ultra-small resonant structure is constructed and adapted to emit at least one of visible light, infrared light, and ultraviolet light.

11. A method comprising:

providing a plurality of circuits operatively connected to a waveguide layer; and

emitting, by an ultra-small resonant structure, an electromagnetic signal into said waveguide layer, whereby said signal may be obtained by each of said plurality of circuits.

12. A method as in claim 11 wherein said signal encodes a clock signal.

13. A method as in claim 11 wherein said signal is encoded in visible light.

14. A method as in claim 11 wherein the ultra-small resonant structure is constructed and adapted to emit electromagnetic radiation (EMR) in response to excitation by a beam of charged particles.

15. A method as in claim 14 wherein the charged particle beam comprises particles selected from the group comprising: electrons, positive ions, negative ions, positrons and protons.

16. A method as in claim 14 wherein a source of said beam of charged particles is selected from the group comprising:

an ion gun, a tungsten filament, a cathode, a planar vacuum triode, an electron-impact ionizer, a laser ionizer, a chemical ionizer, a thermal ionizer, and an ion-impact ionizer.

17. A method as in claim 14 wherein the ultra-small resonant structure is constructed and adapted to emit at least one of visible light, infrared light, and ultraviolet light.

18. A method of providing a clock signal to a plurality of circuits, the method comprising:

providing a waveguide layer and operatively connecting each of the circuits to the waveguide layer; and

using an ultra-small resonant structure to emit an electromagnetic signal into said waveguide layer, whereby said signal may be obtained by each of said plurality of circuits, wherein said signal encodes a clock signal.

19. A method as in claim 18 wherein said signal is encoded in visible light.

20. A method as in claim 18 wherein the ultra-small resonant structure is constructed and adapted to emit electromagnetic radiation (EMR) in response to excitation by a beam of charged particles.

21. A method as in claim 20 wherein the charged particle beam comprises particles selected from the group comprising: electrons, positive ions, negative ions, positrons and protons.

22. A method as in claim 20 wherein a source of said beam of charged particles is selected from the group comprising:

an ion gun, a tungsten filament, a cathode, a planar vacuum triode, an electron-impact ionizer, a laser ionizer, a chemical ionizer, a thermal ionizer, and an ion-impact ionizer.

23. A method as in claim 20 wherein the ultra-small resonant structure is constructed and adapted to emit at least one of visible light, infrared light, and ultraviolet light.

Assignments (7)
CORRECTIVE ASSIGNMENT TO CORRECT THE TO REMOVE PATENT 7,559,836 WHICH WAS ERRONEOUSLY CITED IN LINE 27 OF SCHEDULE I AND NEEDS TO BE REMOVED AS FILED ON 4/10/2012. PREVIOUSLY RECORDED ON REEL 028022 FRAME 0961. ASSIGNOR(S) HEREBY CONFIRMS THE SECURITY AGREEMENT. Recorded Apr 25, 2018
From: ADVANCED PLASMONICS, INC.
To: V.I. FOUNDERS, LLC
Reel/Frame 046011/0827 →
CORRECTIVE ASSIGNMENT TO CORRECT THE ASSIGNMENT PREVIOUSLY RECORDED AT REEL: 028022 FRAME: 0961. ASSIGNOR(S) HEREBY CONFIRMS THE CORRECTIVE ASSIGNMENT TO CORRECT THE #27 IN SCHEDULE I OF ASSIGNMENT SHOULD BE: TRANSMISSION OF DATA BETWEEN MICROCHIPS USING A PARTICLE BEAM, PAT. NO 7569836.. Recorded Dec 21, 2017
From: ADVANCED PLASMONICS, INC.
To: V.I. FOUNDERS, LLC
Reel/Frame 044945/0570 →
NUNC PRO TUNC ASSIGNMENT Recorded Oct 9, 2012
From: APPLIED PLASMONICS, INC.
To: ADVANCED PLASMONICS, INC.
Reel/Frame 029095/0525 →
NUNC PRO TUNC ASSIGNMENT Recorded Oct 3, 2012
From: VIRGIN ISLAND MICROSYSTEMS, INC.
To: APPLIED PLASMONICS, INC.
Reel/Frame 029067/0657 →
SECURITY AGREEMENT Recorded Apr 10, 2012
From: ADVANCED PLASMONICS, INC.
To: V.I. FOUNDERS, LLC
Reel/Frame 028022/0961 →
SECURITY AGREEMENT Recorded Dec 4, 2009
From: APPLIED PLASMONICS, INC.
To: V.I. FOUNDERS, LLC
Reel/Frame 023594/0877 →
ASSIGNMENT OF ASSIGNOR'S INTEREST Recorded May 5, 2006
From: GORRELL, JONATHAN; DAVIDSON, MARK; MAINES, MICHAEL
To: VIRGIN ISLAND MICROSYSTEMS, INC.
Reel/Frame 017873/0038 →