IP Library Patent Application 16899642
Patent Application
App. No. 16/899,642

LIQUID CRYSTAL OPTICAL ELEMENT AND FABRICATION METHOD THEREOF

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Quick Facts
Patent No.
US None
App. No.
16/899,642
Abstract

An optical device is provided. The optical device includes a first birefringent film formed on a substrate, a first barrier film formed on the first birefringent film, and a second birefringent film formed on the first barrier film. The first birefringent film includes a first birefringent material. The second birefringent film includes a second birefringent material.

Claims (47)

1 . An optical device, comprising:

a first birefringent film formed on a substrate;

a first barrier film formed on the first birefringent film; and

a second birefringent film formed on the first barrier film,

wherein the first birefringent film includes a first birefringent material, and

wherein the second birefringent film includes a second birefringent material.

2 . The optical device of claim 1 , further comprising an alignment structure formed between the first barrier film and the second birefringent film, wherein the alignment structure is configured to provide a predetermined alignment pattern, and optically anisotropic molecules of the second birefringent film are at least partially aligned in the predetermined alignment pattern.

3 . The optical device of claim 1 , further comprising an alignment structure formed between the first birefringent film and the substrate, wherein the alignment structure is configured to provide a predetermined alignment pattern, and optically anisotropic molecules of the first birefringent film are at least partially aligned in the predetermined alignment pattern.

4 . The optical device of claim 1 , wherein the first barrier film includes at least one of a water-borne barrier coating, a solvent-based barrier coating, a sol-gel barrier coating, or a solventless barrier coating.

5 . The optical device of claim 1 , wherein the first barrier film is an organic film, an inorganic film, or an organic-inorganic hybrid film.

6 . The optical device of claim 1 , wherein at least one of the first birefringent film or the second birefringent film is a liquid crystal polymer (“LCP”) film.

7 . The optical device of claim 6 , wherein the LCP film is at least one of a cholesteric liquid crystal film, a Pancharatnam Berry Phase film, a polarization volume hologram film, a compensation film, or a retardation film.

8 . The optical device of claim 7 , wherein the LCP film includes at least one of polymerized liquid crystals (“LCs”), polymer-stabilized LCs, or photopolymers.

9 . The optical device of claim 8 , wherein the LCs include at least one of nematic LCs, twist-bend LCs, chiral nematic LCs, or smectic LCs.

10 . The optical device of claim 1 , further comprising a second barrier film formed on the second birefringent film.

11 . The optical device of claim 1 , wherein optically anisotropic molecules of at least one of the first birefringent film or the second birefringent film have a photo-induced orientational pattern.

12 . A method for fabricating an optical device, comprising:

dispensing a first composition on a substrate and polymerizing the first composition to form a first birefringent film on the substrate, the first birefringent film including a first birefringent material;

dispensing a second composition to form a first barrier film on the first birefringent film; and

dispensing a third composition on the first barrier film and polymerizing the third composition to form a second birefringent film on the first barrier film, the second birefringent film including a second birefringent material.

13 . The method of claim 12 , further comprising:

prior to dispensing the first composition to form the first birefringent film, dispensing a fourth composition to form a first alignment structure on the substrate,

wherein the first alignment structure is configured to provide a first predetermined alignment pattern,

wherein the first birefringent film is formed on the first alignment structure, and

wherein optically anisotropic molecules of the first birefringent material are at least partially aligned in the first predetermined alignment pattern.

14 . The method of claim 13 , further comprising:

prior to dispensing the third composition to form the second birefringent film, dispensing a fifth composition to form a second alignment structure on the first barrier film,

wherein the second alignment structure is configured to provide a second predetermined alignment pattern,

wherein the second birefringent film is formed on the second alignment structure, and

wherein optically anisotropic molecules of the second birefringent material are at least partially aligned in the second predetermined alignment pattern.

15 . The method of claim 12 , wherein dispensing the second composition to form the first barrier film on the first birefringent film comprises:

forming at least one of a water-borne barrier coating, a solvent-based barrier coating, a sol-gel barrier coating, or a solventless barrier coating on the first birefringent film.

16 . The method of claim 12 , wherein at least one of the first birefringent film or the second birefringent film is a liquid crystal polymer (“LCP”) film.

17 . The method of claim 12 , wherein dispensing the first composition on the substrate and polymerizing the first composition to form the first birefringent film on the substrate comprises:

coating a thin layer of the first composition on a surface of the substrate; and

polymerizing the thin layer of the first composition to form the first birefringent film.

18 . The method of claim 17 , wherein dispensing the second composition to form the first barrier film on the first birefringent film comprises:

after polymerizing the thin layer of the first composition to form the first birefringent film, coating a thin layer of the second composition on the first birefringent film, wherein the second composition is an organic coating composition; and

polymerizing the thin layer of the second composition to form the first barrier film prior to dispensing the third composition to form the second birefringent film.

19 . The method of claim 12 , further comprising:

dispensing a thin layer of a fourth composition on the second birefringent film, wherein the fourth composition is an organic coating composition;

polymerizing the thin layer of the fourth composition to form a second barrier film on the second birefringent film;

dispensing a fifth composition on the second barrier film; and

polymerizing the fifth composition to form a third birefringent film on the second barrier film.

20 . The method of claim 12 , wherein dispensing the first composition on the substrate and polymerizing the first composition to form the first birefringent film on the substrate comprises:

coating a thin layer of the first composition including a polarization sensitive material, wherein the polarization sensitive material is initially isotropic before being exposed to a polarized light irradiation and exhibits an induced optical anisotropy after being exposed to the polarized light irradiation; and

exposing the thin layer of the first composition to the polarized light irradiation to form the first birefringent film having anisotropic molecules arranged in a photo-induced orientational pattern.

Assignments (2)
CHANGE OF NAME Recorded Jun 12, 2022
From: FACEBOOK TECHNOLOGIES, LLC
To: META PLATFORMS TECHNOLOGIES, LLC
Reel/Frame 060345/0029 →
ASSIGNMENT OF ASSIGNOR'S INTEREST Recorded Jun 18, 2020
From: WANG, JUNREN; LI, RYAN; LU, LU
To: FACEBOOK TECHNOLOGIES, LLC
Reel/Frame 052972/0666 →