IP Library › Granted Patent US 11,480,716
Granted Patent B2
US 11,480,716 · App. 16/950,541 · Granted Oct 25, 2022

Optical element that functions as a liquid crystal diffraction lattice

Inventors: Yukito Saitoh (Kanagawa, JP); Hiroshi Sato (Kanagawa, JP)
Assignee: FUJIFILM Corporation
G02B5/18G02B5/3016G02F1/133636G02F2413/06G02F2413/07G02F2413/105
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Quick Facts
Patent No.
US 11,480,716
App. No.
16/950,541
Granted
Oct 25, 2022
Kind
B2
Abstract

The optical element is an optical element including a first optically anisotropic layer which is a cured layer of a liquid crystal composition containing a rod-like liquid crystal compound and a second optically anisotropic layer which is laminated on the first optically anisotropic layer and is a cured layer of a liquid crystal composition containing a disk-like liquid crystal compound, wherein each of the first optically anisotropic layer and the second optically anisotropic layer, has a liquid crystal alignment pattern in which an optical axis of the rod-like liquid crystal compound and an optical axis of the disk-like liquid crystal compound are respectively parallel to a surface of the optically anisotropic layer and oriented along at least one in-plane direction, orientation of the optical axis changes continuously and rotationally, and the orientation of the optical axis rotates by 180° with a period of 0.5 μm to 5 μm.

Claims (26)

1. An optical element comprising:

an optically anisotropic layer having a laminated structure in which a first optically anisotropic layer, which is a cured layer of a liquid crystal composition containing a rod-like liquid crystal compound, and a second optically anisotropic layer, which is laminated on the first optically anisotropic layer and is a cured layer of a liquid crystal composition containing a disk-like liquid crystal compound, are laminated on each other,

wherein the first optically anisotropic layer has a first liquid crystal alignment pattern in which an optical axis of the rod-like liquid crystal compound is parallel to a surface of the first optically anisotropic layer and is oriented along at least one in-plane direction of the first optically anisotropic layer, orientation of the optical axis of the rod-like liquid crystal compound changes continuously and rotationally along the at least one in-plane direction of the first optically anisotropic layer, and the orientation of the optical axis of the rod-like liquid crystal compound rotates by 180° with a period of 0.5 μm to 5 μm, and

the second optically anisotropic layer has a second liquid crystal alignment pattern in which an optical axis of the disk-like liquid crystal compound is parallel to a surface of the second optically anisotropic layer and is oriented along at least one in-plane direction of the second optically anisotropic layer, orientation of the optical axis of the disk-like liquid crystal compound changes continuously and rotationally along the at least one in-plane direction of the second optically anisotropic layer, and the orientation of the optical axis of the disk-like liquid crystal compound rotates by 180° with a period of 0.5 μm to 5 μm.

2. The optical element according to claim 1 ,

wherein an in-plane retardation of the first optically anisotropic layer with respect to light having a first wavelength λ 1 is in a range of 0.36λ 1 to 0.64λ 1 .

3. The optical element according to claim 1 ,

wherein an in-plane retardation of the second optically anisotropic layer with respect to light having a second wavelength λ 2 is in a range of 0.36λ 2 to 0.64λ 2 .

4. The optical element according to claim 1 ,

wherein an in-plane retardation of the optically anisotropic layer having the laminated structure with respect to light having a wavelength λ is in a range of 0.36λ to 0.64λ.

5. The optical element according to claim 1 ,

wherein the rod-like liquid crystal compound in the first optically anisotropic layer is twistedly aligned in a thickness direction of the first optically anisotropic layer according to a first twist property.

6. The optical element according to claim 1 ,

wherein the disk-like liquid crystal compound in the second optically anisotropic layer is twistedly aligned in a thickness direction of the second optically anisotropic layer according to a second twist property.

7. The optical element according to claim 5 ,

wherein the disk-like liquid crystal compound in the second optically anisotropic layer is twistedly aligned in a thickness direction of the second optically anisotropic layer according to a second twist property,

the first twist property and the second twist property exhibit the same orientation, and

the twisted alignment of the optical axis of the rod-like liquid crystal compound and the twisted alignment of the optical axis of the disk-like liquid crystal compound are continuous twisted alignment in the first optically anisotropic layer and the second optically anisotropic layer.

8. The optical element according to claim 5 ,

wherein the disk-like liquid crystal compound in the second optically anisotropic layer is twistedly aligned in a thickness direction of the second optically anisotropic layer according to a second twist property, and

the first twist property and the second twist property exhibit opposite orientation.

9. The optical element according to claim 1 ,

wherein the rod-like liquid crystal compound in the first optically anisotropic layer and the disk-like liquid crystal compound in the second optically anisotropic layer are continuously cholesterically aligned in a thickness direction.

10. The optical element according to claim 1 ,

wherein the rod-like liquid crystal compound in the first optically anisotropic layer exhibits first cholesteric alignment in a thickness direction, and

the disk-like liquid crystal compound in the second optically anisotropic layer exhibits second cholesteric alignment in a thickness direction.

Assignments (1)
ASSIGNMENT OF ASSIGNOR'S INTEREST Recorded Nov 18, 2020
From: SAITOH, YUKITO; SATO, HIROSHI
To: FUJIFILM CORPORATION
Reel/Frame 054406/0747 →
Priority Claims (1)
JP JP2018-096569 · May 18, 2018 · national
Continuity (2)
Continuation PCTJP2019019794 · May 17, 2019
Related Publication 20210088703A1 · Mar 25, 2021