Directional backlight
A directional display may include a waveguide. The waveguide may include light extraction features arranged to direct light from an array of light sources by total internal reflection to an array of viewing windows and a reflector arranged to direct light from the waveguide by transmission through extraction features of the waveguide to the same array of viewing windows. A further spatially multiplexed display device comprising a spatial light modulator and parallax element is arranged to cooperate with the illumination from the waveguide. An efficient and bright autostereoscopic display system with low cross talk and high resolution can be achieved.
1 . An autostereoscopic directional display device comprising:
a directional backlight comprising
a waveguide comprising first and second, opposed guide surfaces for guiding input light along the waveguide, and
an array of light sources arranged to generate the input light at different input positions in a lateral direction across the waveguide,
wherein the second guide surface is arranged to deflect light guided through the waveguide out of the waveguide through the first guide surface as output light, and the waveguide is arranged to direct the output light into optical windows in output directions that are distributed in a lateral direction in dependence on the input position of the input light, wherein the optical windows are arranged to provide a left eye viewing window and a right eye viewing window;
a transmissive spatial light modulator comprising an array of pixels arranged to receive the output light from the waveguide and to modulate it to display an image; and
in series with the spatial light modulator, a parallax element arranged to direct light from pixels of the spatial light modulator into further viewing windows each having a width smaller than a diameter of a pupil of an eye of an observer.
2 . An autostereoscopic directional display device as claimed in claim 1 , further comprising a control system arranged to control the light sources to output light into the left eye viewing window and right eye viewing window in a temporally multiplexed manner, and to control the spatial light modulator to display left and right eye images in a temporally multiplexed manner in synchronization with the control of the light sources.
3 . An autostereoscopic directional display device as claimed in claim 2 , wherein the control system is arranged to control the spatial light modulator to display left and right eye images having a composition within the further viewing windows that is adjusted to provide accommodation adjustment for the observer.
4 . An autostereoscopic directional display device as claimed in claim 2 , wherein the control system is arranged to control the spatial light modulator to display left and right eye images having a composition within the further viewing windows that corresponds to the appearance of image points from different locations within the pupil of the observer.
5 . An autostereoscopic directional display device as claimed in claim 2 , further comprising an observer tracking apparatus arranged to track the position of the observer, and wherein the control system is arranged to control the light sources to output light into the left eye viewing window and right eye viewing window in response to the tracked position of the observer.
6 . An autostereoscopic directional display device as claimed in claim 5 , wherein the observer tracking apparatus is further arranged to track the position of the pupils of the observer and the control system is arranged to control the spatial light modulator to display left and right eye images having a composition within the further viewing windows that is adjusted in accordance with the tracked position of the pupils of the observer.
7 . An autostereoscopic directional display device as claimed in claim 5 , wherein the parallax element is controllable to adjust the location of the further viewing windows, the observer tracking apparatus is further arranged to track the position of the pupils of the observer, and the control system is arranged to control the parallax element to adjust the location of the further viewing windows in accordance with the tracked position of the pupils of the observer.
8 . An autostereoscopic directional display device as claimed in claim 1 , wherein the parallax element comprises a lens array.
9 . An autostereoscopic directional display device as claimed in 1 , wherein the parallax element comprises an aperture array.
10 . An autostereoscopic directional display device as claimed in claim 1 , wherein the parallax element is arranged to direct light from pixels of the spatial light modulator into a two-dimensional array of further viewing windows.
11 . An autostereoscopic directional display device as claimed in claim 1 , wherein the ratio of the width of each of a pupil of the observer to the pitch of the further viewing windows is greater than 1.5, and preferably greater than 3.0.