EP1096484A2

Optical multilayer disk, multiwavelength light source, and optical system using them

Abstract

When a wavelength of a first laser beam (23) with which a first recording medium (17) including a first recording layer is recorded and reproduced is indicated as λ1 (nm), a wavelength of a second laser beam (24) with which a second recording medium (18) including a second recording layer is recorded and reproduced as λ2 (nm), the relationship between the wavelength λ1 and the wavelength λ2 is set to be expressed by 10 ≦ |λ1 - λ2| ≦ 120. The first recording layer has a light absorptance ratio of at least 1.0 with respect to the wavelength λ1. The light transmittance of the first recording medium (17) with respect to the wavelength λ2 is set to be at least 30 in both the cases where the recording layer is in a crystal state and in an amorphous state. In order to record and reproduce the optical multilayer disk with the above-mentioned characteristics, a multiwavelength light source with the following configuration is used. Wavelengths of fundamental waves with different wavelengths from injection parts formed at one end of a plurality of optical waveguides, which satisfy phase matching conditions different from one another and are formed in the vicinity of the surface of a substrate, are converted simultaneously, and the first and second laser beams are emitted from emission parts formed at substantially the same position at the other end of the optical waveguides. This enables an optimum optical system for high density recording and reproduction to be obtained.

EP1096484A2, drawing sheet 1
Sheet 1 of 31

Term

Term ended

Projected expiry passed 24 October 2020, 5.9 years ago.

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50 claims: 5 independent, 45 dependent

  1. 1
    An optical information recording medium, which is recorded and reproduced by laser beams from one side, comprising at least two recording layers formed of a phase change material on a substrate, wherein the recording layers include a first recording layer and a second recording layer from the side on which the laser beams are incident, the first recording layer is included in a first recording medium and the second recording layer is included in a second recording medium, when a wavelength of a first laser beam with which recording and reproduction are performed with respect to the first recording medium is indicated as λ1 (nm), a wavelength of a second laser beam with which the second recording medium is recorded and reproduced as λ2 (nm), a light absorptance of the first recording layer in a crystal state as Ac (%), a light absorptance of the first recording layer in an amorphous state as Aa (%), a light transmittance of the first recording medium with the first recording layer being in the crystal state as Tc (%), a light transmittance of the first recording medium with the first recording layer being in the amorphous state as Ta (%), and the relationship between the wavelength λ1 and the wavelength λ2 is expressed by 10 ≦ |λ1 - λ2| ≦ 120 , the first recording layer has a light absorption ratio Ac/Aa in a predetermined range with respect to the wavelength λ1 and the first recording medium satisfies conditions of Tc ≧ 30 and Ta ≧ 30 with respect to the wavelength λ2.
  2. 12
    A method of recording and reproducing with respect to an optical information recording medium including at least two recording layers formed of a phase change material on a substrate from one side using laser beams, wherein the recording layers include a first recording layer and a second recording layer from the side on which the laser beams are incident, the first recording layer is included in a first recording medium and the second recording layer is included in a second recording medium, when a wavelength of a first laser beam with which recording and reproduction are performed with respect to the first recording medium is indicated as λ1 (nm), and a wavelength of a second laser beam with which the second recording medium is recorded and reproduced as λ2 (nm), the relationship between the wavelength λ1 and the wavelength λ2 is expressed by 10 ≦ |λ1 - λ2| ≦ 120 .
  3. 18
    An optical waveguide device, comprising:a substrate;a plurality of optical waveguides formed in the vicinity of a surface of the substrate;injection parts formed at one end of the optical waveguides;and emission parts formed on the other end of the optical waveguides, wherein the plurality of optical waveguides satisfy phase matching conditions different from one another, and the emission parts of the plurality of optical waveguides are provided at substantially the same position.
  4. 26
    An multiwavelength light source, comprising;a plurality of coherent light sources with different wavelengths;and an optical waveguide device, including a substrate, a plurality of optical waveguides formed in the vicinity of a surface of the substrate, injection parts formed at one end of the optical waveguides, and emission parts formed on the other end of the optical waveguides, the plurality of optical waveguides satisfying phase matching conditions different from one another, and the emission parts of the plurality of optical waveguides being provided at substantially the same position, wherein the wavelengths of beams emitted from the coherent light sources are converted by the optical waveguide device.
  5. 31
    An optical system, comprising:a multiwavelength light source, including a plurality of coherent light sources with different wavelengths and an optical waveguide device, the optical waveguide device including a substrate, a plurality of optical waveguides formed in the vicinity of a surface of the substrate, injection parts formed at one end of the optical waveguides, and emission parts formed on the other end of the optical waveguides, the plurality of optical waveguides satisfying phase matching conditions different from one another, the emission parts of the plurality of optical waveguides being provided at substantially the same position, and wavelengths of beams from the coherent light sources being converted by the optical waveguide device;and a focusing optical system.