IP Library Granted Patent US 11,237,403
Granted Patent B2
US 11,237,403 · App. 17/155,412 · Granted Feb 1, 2022

Virtual and augmented reality systems and methods

Inventor: Brian T. Schowengerdt (Seattle, WA)
Assignee: Magic Leap, Inc.
G02B27/4205G02B3/0006G02B3/0037G02B5/005G02B5/1814G02B5/1828G02B5/20G02B6/00G02B6/02042G02B6/06G02B6/32G02B6/34G02B6/40G02B17/08G02B26/0808G02B27/0087G02B27/0093G02B27/01G02B27/017G02B27/0172G02B27/0176G02B30/24G02C7/049G02C7/104G02F1/0105G02F1/1334G02F1/17G02F1/29G02F1/292G02F1/31G06F3/011G06F3/013G06F3/017G06F3/1423G06K9/0061G06K9/52G06T5/002G06T5/003G06T5/50G06T7/50G06T7/73G06T13/40G06T15/00G06T15/10G06T15/506G06T17/10G06T19/003G06T19/006G06T19/20G09G5/003G09G5/02G09G5/10G09G5/18H04N5/21H04N5/225H04N5/74H04N13/117H04N13/239H04N13/286H04N13/341H04N13/344H04N13/361H04N13/363H04N13/366H04N13/383G02B2006/0098G02B2027/014G02B2027/0118G02B2027/0123G02B2027/0125G02B2027/0134G02B2027/0163G02B2027/0178G02C2202/16G02F1/294G06T2207/10021G06T2207/30201G06T2213/08H04N2013/0085
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Quick Facts
Patent No.
US 11,237,403
App. No.
17/155,412
Granted
Feb 1, 2022
Kind
B2
Abstract

A method for displaying virtual content to a user, the method includes determining an accommodation of the user's eyes. The method also includes delivering, through a first waveguide of a stack of waveguides, light rays having a first wavefront curvature based at least in part on the determined accommodation, wherein the first wavefront curvature corresponds to a focal distance of the determined accommodation. The method further includes delivering, through a second waveguide of the stack of waveguides, light rays having a second wavefront curvature, the second wavefront curvature associated with a predetermined margin of the focal distance of the determined accommodation.

Claims (27)

1. A method for displaying virtual content to a user, comprising:

propagating, using a plurality of light guiding structures, coherent light associated with one or more frames of image data;

producing, using the plurality of light guiding structures, an aggregate wavefront;

inducing, using a phase modulator coupled to one or more light guiding structures of the plurality of light guiding structures, one or more phase delays in projected light that is projected by the one or more light guiding structures;

controlling, using a processor, the phase modulator in a manner such that the aggregate wavefront produced by the plurality of light guiding structures is varied between a planar wavefront and a plurality of curved wavefronts with respective curvatures that correspond to a plurality of focal distances for the virtual content; and

presenting, using a waveguide assembly that comprises at least one weak lens, the image data at the plurality of focal distances to at least one eye of the user based at least in part upon the aggregate wavefront and the one or more phase delays.

2. The method of claim 1 , further comprising a light guiding structure of the plurality of light guiding structures producing a spherical wavefront.

3. The method of claim 2 , wherein spherical wavefronts produced by at least two light guiding structures constructively interfere with each other.

4. The method of claim 2 , wherein spherical wavefronts produced by at least two light guiding structures destructively interfere with each other.

5. The method of claim 1 , wherein the aggregate wavefront includes an approximately planar wavefront.

6. The method of claim 5 , wherein the planar wavefront corresponds to an optical infinity focal plane.

7. The method of claim 1 , wherein the aggregate wavefront comprises a curved wavefront.

8. The method of claim 7 , wherein the aggregate wavefront corresponds to a focal plane closer than optical infinity.

9. The method of claim 7 , further comprising injecting an inverse Fourier transform of a desired beam into the plurality of light guiding structures, such that a desired aggregate wavefront is produced.

10. The method of claim 1 , further comprising transmitting, using an image generating source operatively coupled to the plurality of light guiding structures, the coherent light into the plurality of light guiding structures.

11. The method of claim 10 , wherein the plurality of light guiding structures includes a multi-mode optical fiber that permits light beams to propagate along multiple angular paths, rather than a single angular path.

12. The method of claim 10 , wherein the plurality of light guiding structures includes a single-mode optical fiber that permits light beams to propagate along a single angular path, rather than a plurality of angular paths.

13. The method of claim 10 , the plurality of light guiding structures including at least one diffuser or light scattering component disposed on an exit end of an optical fiber of the plurality of fibers.

14. The method of claim 10 , wherein the plurality of light guiding structures includes a multicore optical fiber comprising a plurality of cores, and each core is configured to emit respective light in a form of a spherical wavefront.

15. The method of claim 14 , further comprising storing, using a memory, at least a plurality of instructions that controls the phase modulator to modulate the plurality of optical fibers to generate a sequence of aggregate wavefronts that includes a planar aggregate wavefront and a plurality of curved aggregate wavefronts with a plurality of corresponding curvatures.

16. The method of claim 1 , further comprising:

monitoring, using an accommodation monitoring module operatively coupled to the processor or the phase modulator, an accommodation state of the user; and

adjusting, using the accommodation monitoring module, a focal distance associated with the aggregate wavefront based in part or in whole upon the accommodate state.

17. The method of claim 16 , further comprising propagating, using one or more waveguides, the projected light.

18. The method of claim 16 , further comprising changing, using a variable focusing element disposed along an optical path between the one or more waveguides and at least one eye of the user, the plurality of focal distances.

19. The method of claim 1 , further comprising redirecting, using one or more diffractive elements of a waveguide operatively coupled to the plurality of light guiding structures, input light beams toward a plurality of cantilevered waveguide portions of the waveguide.

20. The method of claim 19 , further comprising controlling an actuator operatively coupled to the waveguide, using a controller operatively coupled to the actuator, to causes a substrate of the waveguide to move at a resonant frequency associated with the plurality of cantilevered waveguide portions.

Assignments (2)
SECURITY INTEREST Recorded May 24, 2022
From: MOLECULAR IMPRINTS, INC.; MENTOR ACQUISITION ONE, LLC; MAGIC LEAP, INC.
To: CITIBANK, N.A., AS COLLATERAL AGENT
Reel/Frame 060338/0665 →
ASSIGNMENT OF ASSIGNOR'S INTEREST Recorded Oct 20, 2021
From: SCHOWENGERDT, BRIAN T.
To: MAGIC LEAP, INC.
Reel/Frame 057855/0304 →
Continuity (5)
Continuation 16814975 · Mar 10, 2020
Continuation 15729494 · Oct 10, 2017
Continuation 14555585 · Nov 27, 2014
Provisional Application 61909774 · Nov 27, 2013
Related Publication 20210141237A1 · May 13, 2021