Mold manufacturing method, optical member manufacturing method, and spectacle lens
There is provided a mold manufacturing method, including: preparing a glass mold formed of a glass material, as a molding mold for manufacturing an optical member having convex defocus portions on at least one of optical surfaces (S 11 ); and irradiating a surface of the glass mold for forming the optical surface, with a short-pulse laser beam to form concave portions corresponding to the defocus portions (S 12 ).
1 . A mold manufacturing method, comprising:
preparing a glass mold formed of a glass material, as a molding mold for manufacturing an optical member having convex defocus portions on at least one of optical surfaces; and
irradiating a surface of the glass mold for forming the optical surface, with a short-pulse laser beam to form concave portions corresponding to the defocus portions,
wherein one of the concave portions is formed by multiple shots of the short-pulse laser beam, and a depth of forming the concave portion is controlled by an overlap between shots.
2 . The mold manufacturing method according to claim 1 , wherein irradiation of the multiple shots is performed while changing an overlap amount so that the overlap amount between shots increases from an outer edge side toward a center side of the concave portion.
3 . The mold manufacturing method according to claim 2 , comprising:
polishing the concave portions after being irradiated with the short-pulse laser beam, to adjust a surface shape of the concave portions.
4 . An optical member manufacturing method, comprising:
molding a resin material using the molding mold obtained by the optical member mold manufacturing method according to claim 2 , to manufacture an optical member having defocus portions on at least one of optical surfaces.
5 . The mold manufacturing method according to claim 1 , comprising:
polishing the concave portions after being irradiated with the short-pulse laser beam, to adjust a surface shape of the concave portions.
6 . An optical member manufacturing method, comprising:
molding a resin material using the molding mold obtained by the optical member mold manufacturing method according to claim 5 , to manufacture an optical member having defocus portions on at least one of optical surfaces.
7 . An optical member manufacturing method, comprising:
molding a resin material using the molding mold obtained by the optical member mold manufacturing method according to claim 1 , to manufacture an optical member having defocus portions on at least one of optical surfaces.
8 . The optical member manufacturing method according to claim 7 , wherein a material having a refractive index of 1.40 or more is used as the resin material.
9 . The optical member manufacturing method according to claim 8 , wherein spectacle lens is manufactured as the optical member, having base regions where a transmitted light is focused at a predetermined position within an eye, and defocus regions where the transmitted light is focused at a position defocused from the predetermined position by the defocus portions.
10 . The optical member manufacturing method according to claim 7 , wherein a spectacle lens is manufactured as the optical member, having base regions where a transmitted light is focused at a predetermined position within an eye, and defocus regions where the transmitted light is focused at a position defocused from the predetermined position by the defocus portions.
11 . A spectacle lens having optical surfaces on an object side and an eyeball side respectively, the spectacle lens comprising:
defocus regions where defocus portions are formed, and base regions where the defocus portions are not formed, on at least one of the optical surfaces,
wherein the defocus portions are formed at a plurality of locations, and when the defocus portions have a shape of X-fold rotational symmetry and an arrangement of the defocus portions is Y-fold rotational symmetry, both X and Y are multiples of 3 or both X and Y are multiples of 4.
12 . The spectacle lens according to claim 11 , wherein a position where a light beam passing through the spectacle lens is focused by the base regions, and a position where the light beam passing through the spectacle lens is focused by the defocus portions are different from each other.