IP Library › Granted Patent US 11,418,330
Granted Patent B2
US 11,418,330 · App. 16/658,398 · Granted Aug 16, 2022

Quantum communication system that switches between quantum key distribution (QKD) protocols and associated methods

Inventors: Victor G. Bucklew (Colorado Springs, CO); James A. Nagel (Fort Wayne, IN); Michael R. Lange (Melbourne, FL)
Assignee: EAGLE TECHNOLOGY, LLC
H04L9/0852H04B10/70H04L9/12
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Quick Facts
Patent No.
US 11,418,330
App. No.
16/658,398
Granted
Aug 16, 2022
Kind
B2
Abstract

A quantum communications system includes a communications system that operates with a quantum key distribution (QKD) system, which includes a transmitter node, a receiver node, and a quantum communications channel coupling the transmitter node and receiver node. The transmitter node may be configured to transmit to the receiver node a bit stream of optical pulses, and switch between first and second QKD protocols based upon at least one channel condition.

Claims (22)

1. A quantum communications system comprising:

a communications system; and

a quantum key distribution (QKD) system operable with the communications system and comprising a transmitter node, a receiver node, and a quantum communications channel coupling the transmitter node and receiver node;

the transmitter node configured to transmit to the receiver node a bit stream of optical pulses and switching between first and second QKD protocols based upon a link distance of the quantum communications channel exceeding a threshold.

2. The quantum communications system of claim 1 wherein the transmitter node comprises a switch for switching between the first protocol and the second protocol.

3. The quantum communications system of claim 2 wherein the transmitter node comprises a channel monitoring device configured to monitor the link distance of the quantum communications channel and operate the switch responsive thereto.

4. The quantum communications system of claim 1 wherein the transmitter node comprises a continuous-variable QKD (CV-QKD) protocol device for generating the first QKD protocol, and a discrete-variable QKD (DV-QKD) protocol device for generating the second QKD protocol.

5. The quantum communications system of claim 1 wherein the quantum communications channel comprises a free-space optical (FSO) communications channel.

6. A quantum key distribution (QKD) system comprising:

a transmitter node, a receiver node, and a quantum communications channel coupling the transmitter node and receiver node; and

the transmitter node configured to transmit to the receiver node a bit stream of optical pulses and switching between first and second QKD protocols based upon a link distance of the quantum communications channel exceeding a threshold.

7. The QKD system of claim 6 wherein the transmitter node comprises a switch for switching between the first protocol and the second protocol.

8. The QKD system of claim 7 wherein the transmitter node comprises a channel monitoring device configured to monitor the link distance of the quantum communications channel and operate the switch responsive thereto.

9. The QKD system of claim 6 wherein the transmitter node comprises a continuous-variable QKD (CV-QKD) protocol device for generating the first QKD protocol, and a discrete-variable QKD (DV-QKD) protocol device for generating the second QKD protocol.

10. The QKD system of claim 6 wherein the quantum communications channel comprises a free-space optical (FSO) communications channel.

11. A method of operating a quantum communications system comprising a communications system and a quantum key distribution (QKD) system operable therewith, the QKD system comprising a transmitter node, a receiver node, and a quantum communications channel coupling the transmitter node and receiver node, the method comprising:

operating the transmitter node to transmit to the receiver node a bit stream of optical pulses; and

switching the transmitter node between first and second QKD protocols based upon a link distance of the quantum communications channel exceeding a threshold.

12. The method of claim 11 wherein the transmitter node comprises a switch for switching between the first protocol and the second protocol.

13. The method of claim 12 wherein the transmitter node comprises a channel monitoring device configured to monitor the link distance of the quantum communications channel and operate the switch responsive thereto.

14. The method of claim 11 wherein the transmitter node comprises a continuous-variable QKD (CV-QKD) protocol device for generating the first QKD protocol, and a discrete-variable QKD (DV-QKD) protocol device for generating the second QKD protocol.

15. The method of claim 11 wherein the quantum communications channel comprises a free-space optical (FSO) communications channel.

Assignments (1)
ASSIGNMENT OF ASSIGNOR'S INTEREST Recorded Oct 29, 2019
From: BUCKLEW, VICTOR G.; NAGEL, JAMES A.; LANGE, MICHAEL R.
To: EAGLE TECHNOLOGY, LLC
Reel/Frame 050853/0476 →
Continuity (1)
Related Publication 20210119786A1 · Apr 22, 2021
Cited By (1)
US 12,309,265