Polarization compensation for wire grid polarizer of head-mounted display system
Abstract
The present disclosure relates generally to techniques for improving the performance and efficiency of optical systems, such as optical systems for using head-mounted display system. The optical systems of the present disclosure may include polarized catadioptric optics, or “pancake optics,” which utilize a wire grid polarizer as a reflective polarizer. Wire grid polarizers may not perform uniformly over wavelength or over varying angles of incidence. To improve performance, a spatially varying polarizer is provided in the optical system that operates to provide polarization compensation for the wire grid polarizer so that the wire grid polarizer performs more uniformly over wavelength and/or over incidence angles (e.g., on-axis and off-axis). The spatially varying polarizer may be formed of a liquid crystal material, such as a multi-twist retarder.
Claims
exact text as granted — not AI-modified1 . An optical system, comprising:
a lens element that receives light from a display subsystem; a first polarizer that receives light from the lens element; a quarter wave plate positioned between the lens element and the first polarizer; and a second polarizer positioned between the display subsystem and the lens element, the second polarizer having a retardance that varies across an optical window of the second polarizer.
2 . The optical system of claim 1 wherein the first polarizer comprises a wire grid polarizer.
3 . The optical system of claim 1 wherein the first polarizer comprises a wire grid polarizer and the second polarizer comprises a spatially varying polarizer.
4 . The optical system of claim 1 wherein the second polarizer comprises a spatially varying polarizer.
5 . The optical system of claim 4 wherein the spatially varying polarizer comprises a multi-twist retarder.
6 . The optical system of claim 4 wherein the spatially varying polarizer provides quarter-wave retardation at a center of the optical window, and gradually decreases the retardation toward the periphery of the optical window.
7 . The optical system of claim 6 wherein the spatially varying polarizer provides octadic-wave retardation at the periphery of the optical window.
8 . The optical system of claim 4 wherein the spatially varying polarizer provides a first retardation at a center of the optical window and provides a second retardation at the periphery of the optical window, wherein the second retardation is less than the first retardation.
9 . The optical system of claim 4 wherein the retardation of the spatially varying polarizer varies linearly or non-linearly across the optical window.
10 . The optical system of claim 4 , further comprising:
control circuitry operatively coupled to the spatially varying polarizer, the control circuitry operative to selectively adjust the retardation provided by the spatially varying polarizer.
11 . An optical system, comprising:
a quarter wave plate that receives light from a display subsystem; a lens element that receives light from the quarter wave plate; a first polarizer that receives light from the lens element; and a second polarizer positioned between the lens element and the first polarizer, the second polarizer having a retardance that varies across an optical window of the second polarizer.
12 . The optical system of claim 11 wherein the first polarizer comprises a wire grid polarizer.
13 . The optical system of claim 11 wherein the first polarizer comprises a wire grid polarizer and the second polarizer comprises a spatially varying polarizer.
14 . The optical system of claim 11 wherein the second polarizer comprises a spatially varying polarizer.
15 . The optical system of claim 14 wherein the spatially varying polarizer comprises a multi-twist retarder.
16 . The optical system of claim 14 wherein the spatially varying polarizer provides quarter-wave retardation at a center of the optical window, and gradually decreases the retardation toward the periphery of the optical window.
17 . The optical system of claim 16 wherein the spatially varying polarizer provides octadic-wave retardation at the periphery of the optical window.
18 . The optical system of claim 14 wherein the spatially varying polarizer provides a first retardation at a center of the optical window and provides a second retardation at the periphery of the optical window, wherein the second retardation is less than the first retardation.
19 . The optical system of claim 14 wherein the retardation of the spatially varying polarizer varies linearly or non-linearly across the optical window.
20 . The optical system of claim 14 , further comprising:
control circuitry operatively coupled to the spatially varying polarizer, the control circuitry operative to selectively adjust the retardation provided by the spatially varying polarizer.
21 . A head-mounted display system, comprising:
first and second near-to-eye display systems, each of the first and second near-to eye display systems comprising:
an optical subsystem, comprising:
a lens element that receives light from a display;
a first polarizer that receives light from the lens element;
a quarter wave plate positioned between the lens element and the first polarizer; and
a second polarizer positioned between the display and the lens element, the second polarizer having a retardance that varies across an optical window of the second polarizer.
22 . The head-mounted display system of claim 21 wherein the first polarizer comprises a wire grid polarizer.
23 . The head-mounted display system of claim 21 wherein the first polarizer comprises a wire grid polarizer and the second polarizer comprises a spatially varying polarizer.
24 . The head-mounted display system of claim 21 wherein the second polarizer comprises a spatially varying polarizer.
25 . The head-mounted display system of claim 24 wherein the spatially varying polarizer comprises a multi-twist retarder.
26 . The head-mounted display system of claim 24 wherein the spatially varying polarizer provides quarter-wave retardation at a center of the optical window, and gradually decreases the retardation toward the periphery of the optical window.
27 . The head-mounted display system of claim 26 wherein the spatially varying polarizer provides octadic-wave retardation at the periphery of the optical window.
28 . The head-mounted display system of claim 24 wherein the spatially varying polarizer provides a first retardation at a center of the optical window and provides a second retardation at the periphery of the optical window.
29 . The head-mounted display system of claim 24 wherein the retardation of the spatially varying polarizer varies linearly or non-linearly across the optical window.Join the waitlist — get patent alerts
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