Hologram waveguiding
US-2024036309-A1 · Feb 1, 2024 · US
US9194545B2 · US · B2
| Field | Value |
|---|---|
| Publication number | US-9194545-B2 |
| Application number | US-201214342448-A |
| Country | US |
| Kind code | B2 |
| Filing date | Sep 3, 2012 |
| Priority date | Sep 7, 2011 |
| Publication date | Nov 24, 2015 |
| Grant date | Nov 24, 2015 |
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A light-emitting device disclosed herein includes: an emission layer; a diffraction grating structure including a diffraction grating; and a diffusion layer having a structure for diffusing light which is transmitted from one face to another face. The light going out from the emission layer has a central wavelength λ. The diffraction grating has a period p which is not less than 1.0λ and not more than 3.5λ. The diffusion layer has a haze of 80% or more and a total light transmittance of 80% or less.
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The invention claimed is: 1. A light-emitting device comprising: an emission layer; a diffraction grating structure including a diffraction grating; and a diffusion layer having a structure for diffusing light which is transmitted from one face to another face, wherein light going out from the emission layer has a central wavelength λ; the diffraction grating has a period p which is not less than 1.0λ and not more than 3.5λ; the diffusion layer has a haze of 80% or more and a total light transmittance of 80% or less; and a maximum amount of change Δu′v′ of (u′v′) of the CIE colorimetric system with respect to an angle of viewing is 0.005 or less. 2. The light-emitting device of claim 1 , wherein the diffraction grating structure is located between the diffusion layer and the emission layer. 3. The light-emitting device of claim 2 , wherein the diffusion layer is in contact with air. 4. The light-emitting device of claim 2 , further comprising a protection layer, wherein the diffusion layer is located between the protection layer and the diffraction grating structure, and the protection layer is in contact with air. 5. The light-emitting device of claim 2 , further comprising first and second electrodes which are in contact with the emission layer and sandwich the emission layer, wherein, the first electrode is interposed between the diffusion layer and the emission layer, and transparent with respect to light going out from the emission layer; and the diffraction grating structure is provided at an interface of the emission layer which is in contact with the first electrode. 6. The light-emitting device of claim 1 , wherein the diffusion layer is located between the diffraction grating structure and the emission layer. 7. The light-emitting device of claim 6 , further comprising first and second electrodes which are in contact with the emission layer and sandwich the emission layer, wherein, the first electrode is interposed between the diffusion layer and the emission layer, and transparent with respect to light going out from the emission layer; and the second electrode reflects light going out from the emission layer. 8. The light-emitting device of claim 1 , wherein the emission layer is located between the diffusion layer and the diffraction grating structure. 9. The light-emitting device of claim 8 , further comprising first and second electrodes which are in contact with the emission layer and sandwich the emission layer, wherein, the first electrode is interposed between the diffusion layer and the emission layer, and transparent with respect to light going out from the emission layer; and the diffraction grating structure is provided at an interface of the emission layer which is in contact with the second electrode. 10. A sheet to be disposed adjacent to a light-emitting device having an emission layer, the sheet comprising: a diffraction grating structure including a diffraction grating; and a diffusion layer having a structure for diffusing light which is transmitted from one face to another face, wherein light going out from the emission layer has a central wavelength λ; the diffraction grating has a period p which is not less than 1.0λ and not more than 3.5λ; the diffusion layer has a haze of 80% or more and a total light transmittance of 80% or less; and a maximum amount of change Δu′v′ of (u′v′) of the CIE colorimetric system with respect to an angle of viewing is 0.005 or less.
comprising scattering means · CPC title
using holographic or diffractive means · CPC title
Mechanical Engineering · mapped topic
used in transmission · CPC title
Electricity · mapped topic
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