SYSTEMS, DEVICES, AND METHODS FOR OPTICAL WAVEGUIDES
Systems, devices, and methods for optical waveguides that are well-suited for use in wearable heads-up displays (WHUDs) are described. An optical device comprises an optical waveguide including a volume of optically transparent material having a first longitudinal surface positioned opposite a second longitudinal surface across a width of the volume, a liquid crystal in-coupler, a controller to modulate a refractive index of the liquid crystal in-coupler, and an out-coupler. Light is in-coupled into the waveguide on a path that is dependent on the modulated refractive index of the liquid crystal in-coupler and is propagated along a length of the waveguide by total internal reflection between the longitudinal surfaces before being out-coupled by the out-coupler. In this way, light signals can be steered to create an image and/or to move an exit pupil of an image. WHUDs that employ such optical waveguides are also described.
1 . A wearable heads-up display (WHUD) comprising:
a support structure that in use is worn on the head of a user;
a projector to generate light signals, the projector comprising at least one light source;
an optical waveguide comprising a volume of optically transparent material to propagate light signals by total internal reflection, wherein the volume of optically transparent material has a first longitudinal surface and a second longitudinal surface, the second longitudinal surface opposite the first longitudinal surface across a width of the volume of optically transparent material;
a liquid crystal in-coupler to tunably steer light signals;
an out-coupler; and
a controller communicatively coupled to the liquid crystal in-coupler, wherein a refractive index of the liquid crystal in-coupler is modulatable in response to signals from the controller.
2 . The WHUD of claim 1 wherein the liquid crystal in-coupler comprises a single modulatable region.
3 . The WHUD of claim 1 wherein the liquid crystal in-coupler comprises at least two distinct, independently modulatable regions.
4 . The WHUD of claim 1 wherein the out-coupler is a liquid crystal out-coupler to tunably steer the light signals and wherein a refractive index of the out-coupler is modulatable in response to signals from the controller.
5 . The WHUD of claim 4 wherein the liquid crystal out-coupler comprises a single modulatable region.
6 . The WHUD of claim 4 wherein the liquid crystal out-coupler comprises at least two distinct, independently modulatable regions.
7 . The WHUD of claim 1 further comprising a processor communicatively coupled to the projector to modulate the generation of light signals and communicatively coupled to the controller to modulate the output of signals from the controller.
8 . The WHUD of claim 1 further comprising a processor communicatively coupled to the projector to modulate the generation of light signals.
9 . The WHUD of claim 1 further comprising a processor communicatively coupled to the controller to modulate the output of signals from the controller.