Stereoscopic display device
A display device including: a backlight, and a stack of layers traversed by light emitted from the backlight, wherein the stack of layers includes a masking layer comprising an array of optical elements, and a display layer including an array of amplitude light modulators, wherein the array of optical elements includes at least two types of optical elements, wherein the types differ in their output angular distribution.
1 . A display device comprising:
a backlight configured to provide coherent light and comprises a light source, and
a stack of layers traversed by light emitted from the backlight, wherein the stack of layers comprises:
a masking layer comprising an array of optical elements, wherein at least some of the optical elements are diffractive optical elements, and
a display layer comprising an array of amplitude light modulators,
wherein the array of optical elements comprises at least two types of optical elements, wherein the types differ in their output angular distribution,
wherein the backlight comprises an optical device having a first waveguide and a second waveguide for guiding light beams emitted from the light source, wherein light beams guided by different waveguides arrive at different areas of the masking layer, wherein each of the light beams arriving at the masking layer from each waveguide is coherent,
wherein the optical device further comprises a bus waveguide, a first optical coupler, and a second optical coupler, wherein the first optical coupler is configured to couple the light beams emitted from the light source from the bus waveguide to the first waveguide, and the second optical coupler is configured to couple the light beams emitted from the light source from the bus waveguide to the second waveguide.
2 . The display device according to claim 1 , wherein the display layer is arranged between the backlight and the masking layer.
3 . The display device according to claim 1 , wherein each type of optical elements suppresses at least one range of directions of transmission.
4 . The display device according to claim 3 , wherein each type of optical elements suppresses transmission to all directions within at least one range of azimuthal angles defined in a reference plane normal to the masking layer.
5 . The display device according to claim 4 , wherein each type of optical elements suppresses transmission to all directions within multiple ranges of azimuthal angles.
6 . The display device according to claim 5 , wherein the multiple ranges are equal in size and distance from each other.
7 . The display device according to claim 6 wherein the at least two types of optical elements differ in an azimuthal offset of their respective multiple ranges.
8 . The display device according to claim 1 , wherein the optical elements are arranged in groups, wherein each group comprises exactly one optical element of each type.
9 . The display device according to claim 8 , wherein each group consists of two or more rows and two or more columns of optical elements in each row.
10 . The display device according to claim 1 , wherein the masking layer comprises two overlapping arrays of optical elements, wherein the optical elements in a first array are responsible for shaping a transmitted beam in a first plane normal to the masking layer and the optical elements in a second array are responsible for shaping a transmitted beam in a second plane normal to the first plane and to the masking layer.
11 . The display device according to claim 10 , wherein the optical elements of the first array are diffractive optical elements and the optical elements of the second array are refractive optical elements.
12 . The display device according to claim 1 , wherein at least for a part of the display area the number of optical elements within that part of the display area is more than half the number of amplitude light modulators within that part of the display area.