IP Library Granted Patent US 11,398,714
Granted Patent B2
US 11,398,714 · App. 16/956,294 · Granted Jul 26, 2022

Widely-tunable harmonic frequency comb in a quantum cascade laser

Inventors: Marco Piccardo (Cambridge, MA); Dmitry Kazakov (Cambridge, MA); Federico Capasso (Cambridge, MA); Paul Chevalier (Somerville, MA)
Assignee: PRESIDENT AND FELLOWS OF HARVARD COLLEGE
H01S5/3401H01S5/0657H01S5/305
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Quick Facts
Patent No.
US 11,398,714
App. No.
16/956,294
Granted
Jul 26, 2022
Kind
B2
Abstract

A wireless communication device includes a quantum cascade laser (QCL) configured to generate a terahertz (THz) or microwave carrier signal. The QCL includes a laser waveguide, a laser optical gain medium incorporated in the laser waveguide, and at least one electrode. An antenna may be integrated with the electrode. The device may be a transmitter, the electrode configured to receive an input baseband signal, the QCL configured to couple the THz or microwave carrier signal and the input baseband signal into a THz or microwave communication signal, and the antenna configured to transmit the THz or microwave communication signal. The device may be a receiver, the antenna configured to receive a THz or microwave communication signal, and the QCL configured to de-couple the THz or microwave communication signal from the THz or microwave carrier signal into an output baseband signal.

Claims (32)

1. An electronic device comprising:

a quantum cascade laser (QCL) configured to generate a terahertz (THz) or microwave carrier signal based on intracavity beating of laser optical frequency modes of the QCL, the QCL comprising:

a laser waveguide,

a laser optical gain medium incorporated in the laser waveguide, and

at least one electrode configured to receive an input baseband signal,

wherein the QCL is further configured to couple the THz or microwave carrier signal and the input baseband signal into a THz or microwave communication signal; and

wherein the electronic device further comprises an antenna configured to transmit the THz or microwave communication signal.

2. An electronic device, comprising:

an antenna configured to receive a terahertz (THz) or microwave communication signal; and

a quantum cascade laser (QCL) configured to generate a THz or microwave carrier signal and to de-couple the THz or microwave communication signal from the THz or microwave carrier signal into an output baseband signal, the QCL comprising:

a laser waveguide,

a laser optical gain medium incorporated in the laser waveguide, and

at least one electrode configured to output the output baseband signal.

3. The electronic device of claim 2 , wherein the QCL is configured to operate in a harmonically-phase-locked regime or in a fundamentally-phase-locked regime.

4. The electronic device of claim 2 , wherein the THz or microwave carrier signal includes laser optical frequency modes equidistantly spaced and separated by a frequency spacing.

5. The electronic device of claim 4 , wherein the laser optical frequency modes are mid-infrared harmonic frequency combs.

6. The electronic device of claim 4 , wherein the frequency spacing corresponds to a higher harmonic of a free spectral range (FSR) of the QCL.

7. The electronic device of claim 2 , wherein the laser waveguide and the laser optical gain medium of the QCL define a Fabry-Perot laser cavity.

8. The electronic device of claim 2 , wherein the antenna is a phase-array antenna integrated with the electrode of the QCL.

9. The electronic device of claim 2 , wherein the QCL further comprises at least one facet optical coating.

10. The electronic device of claim 2 , further comprising a laser control unit configured to control operation of the QCL.

11. A communication system, comprising:

a transmitter device, comprising:

a first quantum cascade laser (QCL) configured to generate a first THz or microwave carrier signal, the first QCL comprising a first electrode configured to receive an input baseband signal, wherein the first QCL is further configured to couple the first THz or microwave carrier signal and the input baseband signal into a THz or microwave communication signal; and

a first antenna configured to transmit the THz or microwave communication signal; and

a receiver device, comprising:

a second antenna configured to receive the THz or microwave communication signal; and

a second QCL configured to generate a second THz or microwave carrier signal and to de-couple the THz or microwave communication signal from the second THz or microwave carrier signal into an output baseband signal, the QCL comprising a second electrode configured to output the output baseband signal.

12. The communication system of claim 11 , wherein the first QCL or the second QCL is configured to operate in a harmonically-phase-locked regime or in a fundamentally-phase-locked regime.

13. The communication system of claim 11 , wherein the first or the second THz or microwave carrier signal includes mid-infrared harmonic frequency combs that are equidistantly spaced by a frequency spacing corresponding to a higher harmonic of a free spectral range (FSR) of the first or the second QCL.

14. The communication system of claim 11 , wherein a first frequency spacing of the first THz or microwave carrier signal is substantially equal to a second frequency spacing of the second THz or microwave carrier signal.

15. The communication system of claim 11 , wherein the first or the second antenna is a phase-array antenna integrated with the first or the second electrode of the first or the second QCL.

Assignments (3)
CONFIRMATORY LICENSE Recorded May 21, 2024
From: HARVARD UNIVERSITY
To: NATIONAL SCIENCE FOUNDATION
Reel/Frame 067475/0053 →
CONFIRMATORY LICENSE Recorded Jan 25, 2024
From: HARVARD UNIVERSITY
To: NATIONAL SCIENCE FOUNDATION
Reel/Frame 066370/0966 →
ASSIGNMENT OF ASSIGNOR'S INTEREST Recorded Jan 20, 2023
From: CAPASSO, FEDERICO; CHEVALIER, PAUL; KAZAKOV, DMITRY; PICCARDO, MARCO
To: PRESIDENT AND FELLOWS OF HARVARD COLLEGE
Reel/Frame 062440/0597 →
Continuity (3)
Provisional Application 62697246 · Jul 12, 2018
Provisional Application 62609232 · Dec 21, 2017
Related Publication 20200335947A1 · Oct 22, 2020