Rapid thickening of aminosilicones to promote emulsion stability and adhesion of UV-curable quantum dot enhancement film emulsions
US-12122948-B2 · Oct 22, 2024 · US
US10856057B2 · US · B2
| Field | Value |
|---|---|
| Publication number | US-10856057-B2 |
| Application number | US-201715435181-A |
| Country | US |
| Kind code | B2 |
| Filing date | Feb 16, 2017 |
| Priority date | Jan 25, 2012 |
| Publication date | Dec 1, 2020 |
| Grant date | Dec 1, 2020 |
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Methods and devices for manipulating optical signals. In one example, a LCOS (liquid crystal on silicon) device includes a surface bearing an anti-reflection structure. The anti-reflection structure includes i) a physical surface having a topography with features having lateral dimensions of less than 2000 nm and having an average refraction index which decreases with distance away from the surface; and ii) a configuration of the topography, averaged over lateral dimensions of greater than 2000 nm, varies with lateral position on the surface.
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The invention claimed is: 1. An LCOS (liquid crystal on silicon) device comprising a surface bearing an anti-reflection structure, wherein: i) the anti-reflection structure comprises a physical surface having a topography with features having lateral dimensions of less than 2000 nm and having an average refraction index which decreases in a direction that is perpendicular to said surface; and ii) a configuration of said topography comprising a stepped pyramid, averaged over lateral dimensions of greater than 2000 nm, varies with lateral position on said surface. 2. An LCOS device as claimed in claim 1 wherein said surface is a front surface of said device. 3. An LCOS device as claimed in claim 1 , combined with a controller to display a hologram on said LCOS device to deflect first light into a first diffractive order of said hologram, wherein said hologram is further configured to deflect second light into a second diffraction order of said hologram, wherein said LCOS device has an interface generating unwanted reflected light, and wherein said second light is in antiphase with said unwanted reflected light. 4. An LCOS device as claimed in claim 3 wherein said second light has substantially the same power as said unwanted reflected light. 5. The LCOS device of claim 1 in an optical system comprising a light source having at least two different wavelengths, λ1 and λ2, wherein a first lateral region of said surface is adapted by said topography for anti-reflection at λ1 and a second lateral region of said surface is adapted by said topography for anti-reflection at λ2. 6. The LCOS device of claim 1 in an optical system comprising a wavelength-selective demultiplexer configured to direct light of at least two different wavelengths, λ1, and λ2, towards different spatial regions of said LCOS device, wherein a first lateral region of said surface is adapted by said topography for anti-reflection at λ1 and a second lateral region of said surface is adapted by said topography for anti-reflection at λ2. 7. A method of suppressing an unwanted reflection using the LCOS device; wherein the LCOS device comprises a surface bearing an anti-reflection structure, and i) the anti-reflection structure comprises a physical surface having a topography with features having lateral dimensions of less than 2000 nm and having an average refraction index which decreases in a direction that is perpendicular to said surface; and ii) a configuration of said topography comprising a stepped pyramid, averaged over lateral dimensions of greater than 2000 nm, varies with lateral position on said surface, the method comprising configuring said anti-reflection structure such that, for at least two different wavelengths, λ1, and λ2, in a first lateral spatial region of said surface, reflection from said surface at λ1 is greater than at λ2, and in a second, different lateral spatial region of said surface, reflection from said surface at λ2 is greater than λ1.
using miscellaneous components, e.g. circulator, polarisation, acousto/thermo optical · CPC title
using space switching · CPC title
using wavelength multiplexing or demultiplexing · CPC title
Polarisation independent · CPC title
Holograms used as optical elements · CPC title
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