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Master disc for an optical disc and method for manufacturing the master disc |
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Cubic boron nitride preparation |
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Cubic boron nitride preparation |
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Method of producing thin, hard coating |
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Process for production of high-hardness boron nitride film |
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Method of making mixed nitride films with at least two metals |
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Hot filament CVD of boron nitride films |
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Process for depositing a layer containing boron and nitrogen |
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Optical recording medium
| Details |
Inventors: Mizukuki, Tadahiko; Koike, Tadashi; Kitagawa, Nobuhisa; Hirose, Sumio;
Assignee: Mitsui Toatsu Chemicals, Inc. (Tokyo, JP)
Primary Examiner: Ryan; Patrick J.
Assistant Examiner: Evans; Elizabeth
Attorney, Agent or Firm: Millen, White, Zelano, & Branigan
An optical recording medium of a single plate type comprises a substrate having a groove, a recording layer containing a dye overlying the substrate, a reflective layer overlying the recording layer and a protective layer overlying the reflective layer, wherein the recording layer is formed by a spin-coating method and the dimension of the groove varies from the center portion of the substrate toward the outer periphery thereof. |
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DETAILED DESCRIPTION What is claimed is: 1. An optical recording medium of a single plate type comprising a substrate having a groove, a recording layer containing a dye overlying the substrate, a reflective layer overlying the recording layer, and a protective layer overlying the reflective layer, wherein the recording layer is formed by a spin-coating method, and the depth of the groove at the center portion of the substrate differs by 50-. cndot. . ANG. from its depth at the outer periphery of the substrate. 2. An optical recording medium according to claim 1, wherein the difference in the depth is 100-300 . ANG. . 3. An optical recording medium according to claim 2, wherein the width of the groove at the center portion of the substrate differs by 0. 05-0. 1 . mu. m from its width at the outer periphery of the substrate. 4. An optical recording medium according to claim 1, wherein the width of the groove at from the center portion of the substrate differs by 0. 05-0. 1 . mu. m from its width at the outer periphery of the substrate . 5. An optical recording medium according to claim 1, in which the dye is a phthalocyanine-type dye. 6. An optical recording medium of a single plate type comprising a substrate having a groove, a recording layer containing a dye overlying the substrate, a reflective layer overlying the recording layer, and a protective layer overlying the reflective layer, wherein the recording layer is formed by a spin-coating method, and the width of the groove at the center portion of the substrate differs by 0. 05-0. 1 . mu. m from its width at the outer periphery of the substrate. 7. An optical recording medium according to claim 6, in which the dye is a phthalocyanine-type dye. 8. A substrate for an optical recording medium of a single plate type adapted to support a recording layer containing a dye, a reflective layer overlying the recording layer, and a protective layer overlying the reflective layer, wherein the recording layer is formed by a spin-coating method, said substrate having a groove whose depth at the center portion of the substrate differs by 50-
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