IP Library Granted Patent US 12,117,603
Granted Patent B2
US 12,117,603 · App. 17/385,474 · Granted Oct 15, 2024

On-mirror integrated adaptive optics

Inventor: Mikhail Vorontsov (Wilmington, DE)
Assignee: II-VI DELAWARE, INC.
G02B26/00G02B17/0816G02B27/0025G02B27/0916G02B26/001
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Quick Facts
Patent No.
US 12,117,603
App. No.
17/385,474
Granted
Oct 15, 2024
Kind
B2
Abstract

In one example, an on-mirror adaptive optics system may include a substrate including a deformable surface, a controller and a plurality of pockets defined in a substrate. Each of the pockets may include a an electrooptical sensor and an actuator. The controller may be communicatively coupled to the electrooptical sensor and the actuator. The controller may be configured to generate control voltages based on signals received from the electrooptical sensor to deform a portion of the deformable surface proximate a corresponding pocket of the plurality of pockets.

Claims (48)

1. An on-mirror adaptive optics system comprising:

a substrate including a deformable surface; and

a controller;

a plurality of pockets defined in the substrate, each of the pockets comprising:

an electrooptical sensor; and

an actuator, wherein the actuator comprises a plurality of electrodes arranged in a circular pattern around an opening of the corresponding pocket of the plurality of pockets;

the controller communicatively coupled to the electrooptical sensor and the actuator, the controller configured to generate control voltages based on signals received from the electrooptical sensor to deform a portion of the deformable surface proximate a corresponding pocket of the plurality of pockets.

2. The on-mirror adaptive optics system of claim 1 , wherein deforming the deformable surface by the actuator compensates for wavefront phase aberrations or distortions.

3. The on-mirror adaptive optics system of claim 1 , wherein the actuator is a multi-electrode bimorph element.

4. The on-mirror adaptive optics system of claim 1 , further comprising a dielectric layer on the deformable surface, wherein the dielectric layer is configured to transmit first wavelengths of optical signals and reflect second wavelengths of optical signals.

5. The on-mirror adaptive optics system of claim 1 , wherein the controller is configured to:

receive signals from the electrooptical sensor indicative of aberrations or distortions in the optical signals travelling through the corresponding pocket;

generate control voltages to compensate for the aberrations or distortions; and

transmit the control voltages to the actuator.

6. The on-mirror adaptive optics system of claim 5 , wherein the controller is positioned in each of the corresponding pockets of the plurality of pockets.

7. The on-mirror adaptive optics system of claim 5 , wherein the controller is positioned outside of the plurality of pockets and controls multiple pockets of the plurality of pockets.

8. The on-mirror adaptive optics system of claim 1 , each of the pockets further comprising a circuit board including one or more electronic components configured to sense aberrations or distortions in optical signals received at each of the corresponding pockets of the plurality of pockets.

9. The on-mirror adaptive optics system of claim 1 , further comprising receiver optics including a primary mirror and a secondary mirror, the receiver optics optically coupled to one or more of the plurality of pockets.

10. The on-mirror adaptive optics system of claim 1 , further comprising transmitter optics including a primary mirror and a secondary mirror, the transmitter optics optically coupled to one or more of the plurality of pockets.

11. The on-mirror adaptive optics system of claim 1 , further comprising:

receiver optics including a primary mirror and a secondary mirror;

one or more optical elements configured to reimage or scale optical signals travelling to the plurality of pockets; and

an optical sensor configured to receive optical signals from the plurality of pockets.

12. The on-mirror adaptive optics system of claim 1 , further comprising:

a beam forming optical system configured to generate a laser beam;

one or more optical elements configured to reimage or scale the laser beam from the beam forming optical system and traveling to the plurality of pockets; and

transmitter optics including a primary mirror and a secondary mirror, the transmitter optics configured to transmit an outgoing laser beam.

13. The on-mirror adaptive optics system of claim 1 , further comprising transmitter or receiver optics including a primary mirror and a secondary mirror, wherein the substrate and the plurality of pockets are included in the primary mirror or the secondary mirror.

14. The on-mirror adaptive optics system of claim 1 , further comprising a transmitter or receiver optics optically coupled to the plurality of pockets.

15. The on-mirror adaptive optics system of claim 14 , wherein the transmitter or receiver optics include a primary mirror and a secondary mirror.

16. The on-mirror adaptive optics system of claim 14 , further comprising:

one or more optical elements configured to reimage or scale optical signals travelling to the plurality of pockets; and

an optical sensor configured to receive optical signals from the plurality of pockets.

17. The on-mirror adaptive optics system of claim 14 , further comprising:

a beam forming optical system configured to generate a laser beam; and

one or more optical elements configured to reimage or scale the laser beam from the beam forming optical system and traveling to the plurality of pockets.

18. The on-mirror adaptive optics system of claim 14 , wherein the transmitter or receiver optics include a primary mirror and a secondary mirror, and the substrate and the plurality of pockets are included in the primary mirror or the secondary mirror.

19. An on-mirror adaptive optics system comprising:

a substrate including a deformable surface; and

a controller;

a plurality of pockets defined in the a substrate, each of the pockets comprising:

an electrooptical sensor; and

an actuator;

a receiver configured to receive optical signals travelling through the corresponding pocket of the plurality of pockets;

a receiver processor coupled to the receiver and configured to measure optical signals received at the receiver and transform the optical signals to electrical signals;

the controller communicatively coupled to the electrooptical sensor and the actuator, the controller configured to generate control voltages based on signals received from the electrooptical sensor to deform a portion of the deformable surface proximate a corresponding pocket of the plurality of pocket

wherein the controller is coupled to the receiver processor and configured to receive the electrical signals.

20. The on-mirror adaptive optics system of claim 19 , wherein the actuator comprises a plurality of electrodes arranged in a circular pattern around an opening of the corresponding pocket of the plurality of pockets.

Assignments (5)
CHANGE OF NAME Recorded Feb 5, 2026
From: COHERENT AEROSPACE & DEFENSE, INC.
To: ATTALON, INC.
Reel/Frame 073708/0248 →
ASSIGNMENT OF ASSIGNOR'S INTEREST Recorded Sep 10, 2025
From: II-VI DELAWARE, INC.
To: COHERENT AEROSPACE & DEFENSE, INC.
Reel/Frame 072216/0858 →
RELEASE OF SECURITY INTEREST IN CERTAIN PATENTS PREVIOUSLY RECORDED AT REEL/FRAME (060562/0254) Recorded Sep 3, 2025
From: JPMORGAN CHASE BANK, N.A., AS COLLATERAL AGENT
To: II-VI DELAWARE, INC.
Reel/Frame 072801/0689 →
SECURITY INTEREST Recorded Jul 1, 2022
From: II-VI INCORPORATED; II-VI DELAWARE, INC.; M CUBED TECHNOLOGIES, INC.; II-VI PHOTONICS (US), INC.; PHOTOP TECHNOLOGIES, INC.; COHERENT, INC.
To: JPMORGAN CHASE BANK, N.A., AS COLLATERAL AGENT
Reel/Frame 060562/0254 →
ASSIGNMENT OF ASSIGNOR'S INTEREST Recorded Jul 26, 2021
From: VORONTSOV, MIKHAIL
To: II-VI DELAWARE, INC.
Reel/Frame 057043/0416 →