IP Library Granted Patent US 9,246,596
Granted Patent B2
US 9,246,596 · App. 14/263,855 · Granted Jan 26, 2016

Monolithic widely-tunable coherent receiver

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Quick Facts
Patent No.
US 9,246,596
App. No.
14/263,855
Granted
Jan 26, 2016
Kind
B2
Abstract

Various embodiments of a coherent receiver including a widely tunable local oscillator laser are described herein. In some embodiments, the coherent receiver can be integrated with waveguides, optical splitters and detectors to form a monolithic optical hetero/homodyne receiver. In some embodiments, the coherent receiver can demodulate the full phase information in two polarizations of a received optical signal over a range of optical wavelengths.

Claims (30)

1. A monolithically integrated optical receiver comprising:

at least one substrate;

a tunable laser resonator monolithically integrated with the substrate, the laser resonator configured to output radiation along an optical axis;

a plurality of photodetectors monolithically integrated with the substrate;

an optical mixer monolithically integrated with the substrate, the optical mixer including:

a first input waveguide optically connected to the laser resonator;

a second input waveguide configured to propagate a modulated optical signal;

a plurality of output waveguides, each of the plurality of photodetectors being optically connected to one of the plurality of output waveguides; and

an optical redirector integrated with at least one of the first input waveguide, the second input waveguide or at least one of the plurality of output waveguides, the optical redirector configured to change the direction of propagation of optical radiation in the waveguide it is integrated with.

2. The optical receiver of claim 1 , wherein the substrate comprises at least one of Si, InP, InAlGaAs, InGaAsP, InGaP, GaAs or InGaAs.

3. The optical receiver of claim 1 , wherein the optical redirector has at least one reflective facet that is arranged at an angle with respect to the waveguide it is integrated with.

4. The optical receiver of claim 1 , wherein the optical redirector is configured to change the direction of propagation of optical radiation in the waveguide it is integrated with by an angle between approximately 90 degrees and approximately 180 degrees.

5. The optical receiver of claim 1 , wherein the optical redirector includes a dielectric.

6. The optical receiver of claim 1 , wherein the optical mixer has at least four output waveguides.

7. The optical receiver of claim 1 , wherein the modulated optical signal has a modulation bandwidth between about 5 GHz and about 50 GHz.

8. The optical receiver of claim 1 , further comprising a polarization rotator disposed in an optical path between the laser resonator and the optical mixer.

9. The optical receiver of claim 1 , wherein the polarization rotator includes an input waveguide, an output waveguide and at least one electrode disposed with respect to the input or the output waveguide.

10. The optical receiver of claim 8 , wherein the polarization rotator is arranged at an angle between about 20 degrees and about 160 degrees or between about −20 degrees and about −160 degrees with respect to the optical axis.

11. The optical receiver of claim 1 , wherein the substrate has a crystallographic axis, and wherein the optical axis of the laser resonator is aligned parallel to the crystallographic axis.

12. The optical receiver of claim 1 , further comprising a second optical mixer monolithically integrated with the substrate, the second optical mixer including:

at least two input waveguides;

a plurality of output waveguides; and

at least one optical redirector integrated with at least one of the input waveguides or at least one of the plurality of output waveguides.

13. The optical receiver of claim 12 , wherein one of the two input waveguides is optically connected to the laser resonator, and the other of the two input waveguides is configured to propagate the modulated optical signal.

14. The optical receiver of claim 12 , wherein the optical mixer is disposed on a side of the laser resonator and the second optical mixer is disposed on an opposite side of the laser resonator.

15. A receiver die comprising:

an input interface; and

the optical receiver of claim 1 , wherein the input interface is configured to receive the modulated signal and couple the received modulated optical signal into the second input waveguide.

16. The receiver die of claim 15 , wherein the optical mixer is disposed at a distance less than about 750 μm from the input interface as measured along the optical axis.

17. The receiver die of claim 16 , wherein the second optical mixer is disposed at a distance less than about 750 μm from the input interface as measured along the optical axis.

Assignments (6)
PARTIAL RELEASE OF SECURITY INTEREST IN PATENTS AND TRADEMARKS Recorded Feb 2, 2026
From: GLAS TRUST COMPANY LLC
To: LUMINAR SEMICONDUCTOR, INC.; FREEDOM PHOTONICS, LLC; OPTOGRATION, INC.; EMFOUR ACQUISITION CO., LLC; EM4, LLC
Reel/Frame 074615/0608 →
PARTIAL RELEASE OF SECURITY INTEREST IN PATENTS AND TRADEMARKS Recorded Feb 2, 2026
From: GLAS TRUST COMPANY LLC
To: LUMINAR SEMICONDUCTOR, INC.; FREEDOM PHOTONICS, LLC; OPTOGRATION, INC.; EMFOUR ACQUISITION CO., LLC; EM4, LLC
Reel/Frame 074667/0219 →
CORRECTIVE ASSIGNMENT TO CORRECT THE THE NAME OF THE FIRST CONVEYING PARTY PREVIOUSLY RECORDED AT REEL: 69312 FRAME: 713. ASSIGNOR(S) HEREBY CONFIRMS THE ASSIGNMENT. Recorded Nov 27, 2024
From: LUMINAR TECHNOLOGIES, INC; LUMINAR , LLC; FREEDOM PHOTONICS LLC
To: GLAS TRUST COMPANY LLC
Reel/Frame 069990/0772 →
SECURITY INTEREST Recorded Nov 6, 2024
From: LUMINAR TECHNOLOGIES, INC; LUMINAR , LLC; FREEDOM PHOTONICS LLC
To: GLAS TRUST COMPANY LLC
Reel/Frame 069312/0669 →
SECURITY INTEREST Recorded Nov 6, 2024
From: LIMINAR TECHNOLOGIES, INC; LUMINAR, LLC; FREEDOM PHOTONICS LLC
To: GLAS TRUST COMPANY LLC
Reel/Frame 069312/0713 →
ASSIGNMENT OF ASSIGNOR'S INTEREST Recorded Dec 8, 2015
From: BARTON, JONATHON; MASHANOVITCH, MILAN
To: FREEDOM PHOTONICS, LLC.
Reel/Frame 037237/0368 →