RESIN-JOINED OPTICAL ELEMENT AND ITS PRODUCTION

PROBLEM TO BE SOLVED: To provide an optical element having a simple structure and a plurality of focuses which can be produced at a low cost by forming a resin layer on a part of the one optical face of the base material of an optical element to generate a plurality of focuses. SOLUTION: The base ma...

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description PROBLEM TO BE SOLVED: To provide an optical element having a simple structure and a plurality of focuses which can be produced at a low cost by forming a resin layer on a part of the one optical face of the base material of an optical element to generate a plurality of focuses. SOLUTION: The base material 11 of an optical element consists of, for example, an optical glass, and is formed into a lens having a desired focus. A resin layer 12 is formed on the optical face of the base material 11 of the optical element. Since the resin layer 12 is present, the focus by the light 13 passing through the base material 11 of the optical element and further through the resin layer 12 is different from the focus by the light 14 passing only through the base material 11 of the optical element, and as a result, the lens shown in the figure has two focuses. As for the base material 11 of the optical element, a crystalline optical material or a polymer optical material may be used as well as the optical glass. By this method, an optical element having a plurality of focuses can be easily obtained even when the face shape of dies to be used are simple planes or spheres.
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SOLUTION: The base material 11 of an optical element consists of, for example, an optical glass, and is formed into a lens having a desired focus. A resin layer 12 is formed on the optical face of the base material 11 of the optical element. Since the resin layer 12 is present, the focus by the light 13 passing through the base material 11 of the optical element and further through the resin layer 12 is different from the focus by the light 14 passing only through the base material 11 of the optical element, and as a result, the lens shown in the figure has two focuses. As for the base material 11 of the optical element, a crystalline optical material or a polymer optical material may be used as well as the optical glass. 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SOLUTION: The base material 11 of an optical element consists of, for example, an optical glass, and is formed into a lens having a desired focus. A resin layer 12 is formed on the optical face of the base material 11 of the optical element. Since the resin layer 12 is present, the focus by the light 13 passing through the base material 11 of the optical element and further through the resin layer 12 is different from the focus by the light 14 passing only through the base material 11 of the optical element, and as a result, the lens shown in the figure has two focuses. As for the base material 11 of the optical element, a crystalline optical material or a polymer optical material may be used as well as the optical glass. By this method, an optical element having a plurality of focuses can be easily obtained even when the face shape of dies to be used are simple planes or spheres.</abstract><edition>7</edition><oa>free_for_read</oa></addata></record>
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subjects AFTER-TREATMENT OF THE SHAPED PRODUCTS, e.g. REPAIRING
OPTICAL ELEMENTS, SYSTEMS, OR APPARATUS
OPTICS
PERFORMING OPERATIONS
PHYSICS
PRODUCING PARTICULAR ARTICLES FROM PLASTICS OR FROM SUBSTANCESIN A PLASTIC STATE
SHAPING OF MATERIAL IN A PLASTIC STATE, NOT OTHERWISE PROVIDEDFOR
SHAPING OR JOINING OF PLASTICS
TRANSPORTING
WORKING OF PLASTICS
WORKING OF SUBSTANCES IN A PLASTIC STATE, IN GENERAL
title RESIN-JOINED OPTICAL ELEMENT AND ITS PRODUCTION
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