IP Library › Granted Patent US 10,591,746
Granted Patent B2
US 10,591,746 · App. 15/850,187 · Granted Mar 17, 2020

Eyewear and methods for making eyewear

Inventor: Brent Macinnis (Ottawa, CA)
Assignee: Brent Macinnis
G02C7/022G02C2202/20
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Quick Facts
Patent No.
US 10,591,746
App. No.
15/850,187
Granted
Mar 17, 2020
Kind
B2
Abstract

Conventional eyewear devices such as spectacles typically include one or more refractive lenses. Such lenses may be thick or bulky. According to an aspect of the disclosure, a metalens-based eyewear devices is provided. The eyewear device includes one or more lenses. Each lens comprises a substantially transparent lens body. Each lens further comprises at least one metalens integrated with the body. Each metalens comprises a respective substantially transparent substrate, and a respective plurality of subwavelength structures arranged on the substrate in a pattern to interact with visible light. The lens body may be planar. The lenses of such eyewear (including at least one metalens) may be thinner and/or lighter than conventional refractive lenses.

Claims (34)

1. An eyewear device comprising:

an eyewear frame wearable by a user;

at least one eyewear lens held by the eyewear frame, each at least one eyewear lens comprising: a respective substantially transparent lens body; and a respective metalens integrated with the lens body, wherein the metalens comprises a substantially transparent and rigid substrate and a plurality of subwavelength structures arranged on the substrate in a pattern to interact with visible light, wherein the metalens of each said at least one eyewear lens is configured to correct an eyesight condition.

2. The eyewear device of claim 1 , wherein the eyewear device comprises spectacles.

3. The eyewear device of claim 1 , wherein the subwavelength structures comprise one of a dielectric material and a metal.

4. The eyewear device of claim 1 , wherein, for each said eyewear lens, the respective lens body comprises one of: plastic, polycarbonate, high-refractive-index polymer, and glass.

5. The eyewear device of claim 1 , wherein the subwavelength structures comprise nanopillars.

6. The eyewear device of claim 1 , wherein, for each said eyewear lens, the respective metalens is embedded within the lens body.

7. The eyewear device of claim 1 , wherein, for each said eyewear lens, the respective lens body comprises a front and a rear surface, and the metalens is arranged on one of: the front surface and the rear surface.

8. The eyewear device of claim 7 , wherein, for each said eyewear lens, the respective substrate of the metalens is adhered to the lens body.

9. The eyewear device of claim 1 , wherein the substrate comprises one of: a polymer and glass.

10. The eyewear device of claim 1 , wherein, for each said eyewear lens:

the respective lens body comprises a front and a rear surface;

the substrate comprises one of the front surface and the rear surface of the lens body.

11. The eyewear device of claim 1 , wherein the lens body is a planar body.

12. The eyewear device of claim 1 , wherein, for each said at least one eyewear lens, the respective metalens comprises a plurality of metalens regions, each of the plurality of metalens regions having a respective focusing strength.

13. An eyewear lens for use in a frame wearable by a user, the eyewear lens comprising:

a substantially transparent lens body; and

a metalens integrated with the lens body, wherein the metalens comprises a substantially transparent and rigid substrate and a plurality of subwavelength structures arranged on the substrate in a pattern to interact with visible light, wherein the metalens is configured to correct an eyesight condition.

14. The eyewear lens of claim 13 , wherein the eyewear lens is for spectacles.

15. The eyewear lens of claim 13 , wherein the subwavelength structures comprise nanopillars.

16. The eyewear lens of claim 13 , wherein the metalens is embedded within the lens body.

17. The eyewear lens of claim 13 , wherein the lens body comprises a front and a rear surface, and the metalens is arranged on one of: the front surface and the rear surface.

18. The eyewear lens of claim 17 , wherein the substrate of the metalens is adhered to the lens body.

19. The eyewear lens of claim 13 , wherein:

the lens body comprises a front and rear surface; and

the substrate comprises one of the front surface and the rear surface of the lens body.

20. The eyewear lens of claim 13 , wherein the metalens comprises a plurality of metalens regions, each of the plurality of metalens regions having a respective focusing strength.

21. An eyewear lens for use in a frame wearable by a user, the eyewear lens comprising:

a substantially transparent lens body; and

a metalens integrated with the lens body, wherein the metalens comprises a substantially transparent and rigid substrate and a plurality of subwavelength structures arranged on the substrate in a pattern to interact with visible light, wherein the metalens comprises a plurality of metalens regions, each of the plurality of metalens regions having a respective focusing strength.

22. The eyewear lens of claim 21 , wherein the subwavelength structures comprise nanopillars.

23. The eyewear lens of claim 21 , wherein the metalens is embedded within the lens body.

24. The eyewear lens of claim 21 , wherein the substrate of the metalens is adhered to the lens body.

Continuity (1)
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Cited By (4)
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