OPTICAL LAYERS TO IMPROVE PERFORMANCE OF EYEPIECES FOR USE WITH VIRTUAL AND AUGMENTED REALITY DISPLAY SYSTEMS
Improved diffractive optical elements for use in an eyepiece for an extended reality system, The diffractive optical elements comprise a diffraction structure having a waveguide substrate, a surface grating positioned on a first side of the waveguide substrate, and one or more optical layer pairs disposed between the waveguide substrate and the surface grating. Each optical layer pair comprises a low index layer and a high index layer disposed directly on an exterior side of the low index layer.
1 . An eyepiece for an XR display system, comprising:
a diffractive optical element (DOE) to receive light associated with one or more frames of image data and direct the light to a user's eyes, the DOE comprising a diffraction structure having a waveguide substrate having a first side and a second side opposing the first side, a surface grating positioned on a first side of the waveguide substrate, and one or more optical layer pairs disposed between the waveguide substrate and the surface grating; and
each optical layer pair comprising a low index layer and a high index layer disposed directly on an exterior side of the low index layer, wherein the high index layer has a higher refractive index than the low index layer.
2 . The eyepiece of claim 1 , wherein the one or more optical layer pair(s) are disposed directly on first side of the waveguide substrate.
3 . The eyepiece of claim 1 , further comprising one or more intermediate layers disposed between the optical layer pair(s) and the waveguide substrate.
4 . The eyepiece of claim 1 , where the one or more optical layer pairs comprises:
a first optical layer pair on the first side of the waveguide substrate; and
a second optical layer pair on the second side of the waveguide substrate.
5 . The eyepiece of claim 1 , further comprising:
a second surface grating on the second side of the waveguide substrate, wherein the second optical layer pair is between the waveguide substrate and the second surface grating.
6 . The eyepiece of claim 1 , further comprising:
an input coupling grating disposed on the first side of the waveguide substrate; and
a first reflector disposed on the second side of the waveguide substrate.
7 . The eyepiece of claim 1 , wherein the waveguide substrate has a refractive index higher than the refractive index of the low index layer.
8 . The eyepiece of claim 1 , wherein:
the high index layer is comprised of a material selected from the group consisting of Si 3 N 4 , ZrO 2 , TiO 2 , SiC, ZnTe, GP, and BP, and the high index layer has a refractive index of greater than about 1.7; and
the low index layer is comprised of a material selected from the group consisting of MgF, SiO 2 , a UV curable resin, and a thermal curable resins, and the low index layer has a refractive index of less than about 1.53.
9 . The eyepiece of claim 1 , wherein the grating surface(s) have a lower refractive index than the high index layer.
10 . The eyepiece of claim 1 , further comprising:
a top surface layer disposed on an exterior surface of the surface grating, the top surface layer having a refractive index higher than the refractive index of the low index layer.
11 . An extended reality (XR) display system for delivering extended reality content to a user, comprising:
an image-generating source to provide one or more frames of image data;
a light modulator to transmit light associated with the one or more frames of image data; and
a diffractive optical element (DOE) to receive light associated with one or more frames of image data and direct the light to a user's eyes, the DOE comprising a diffraction structure having a waveguide substrate having a first side and a second side opposing the first side, a surface grating positioned on a first side of the waveguide substrate, and one or more optical layer pairs disposed between the waveguide substrate and the surface grating; and
each optical layer pair comprising a low index layer and a high index layer disposed directly on an exterior side of the low index layer, wherein the high index layer has a higher refractive index than the low index layer.
12 . The system of claim 11 , wherein the one or more optical layer pair(s) are disposed directly on first side of the waveguide substrate.
13 . The system of claim 11 , wherein the diffraction structure further comprises one or more intermediate layers disposed between the optical layer pair(s) and the waveguide substrate.
14 . The system of claim 11 , where the one or more optical layer pairs comprises:
a first optical layer pair on the first side of the waveguide substrate; and
a second optical layer pair on the second side of the waveguide substrate.
15 . The system of claim 11 , wherein the diffraction structure further comprises:
a second surface grating on the second side of the waveguide substrate, wherein the second optical layer pair is between the waveguide substrate and the second surface grating.
16 . The system of claim 11 , further comprising:
an input coupling grating disposed on the first side of the waveguide substrate; and
a first reflector disposed on the second side of the waveguide substrate.
17 . The system of claim 11 , wherein the waveguide substrate has a refractive index higher than the refractive index of the low index layer.
18 . The system of claim 11 , wherein:
the high index layer is comprised of a material selected from the group consisting of Si 3 N 4 , ZrO 2 , TiO 2 , SiC, ZnTe, GP, and BP, and the high index layer has a refractive index of greater than about 1.7; and
the low index layer is comprised of a material selected from the group consisting of MgF, SiO 2 , a UV curable resin, and a thermal curable resins, and the low index layer has a refractive index of less than about 1.53.
19 . The system of claim 11 , wherein the grating surface(s) have a lower refractive index than the high index layer.
20 . The system of claim 11 , wherein the diffraction structure further comprises:
a top surface layer disposed on an exterior surface of the surface grating, the top surface layer having a refractive index higher than the refractive index of the low index layer.
21 . (canceled)