Optical pickup apparatus

Information

  • Patent Application
  • 20070210238
  • Publication Number
    20070210238
  • Date Filed
    March 01, 2007
    17 years ago
  • Date Published
    September 13, 2007
    16 years ago
Abstract
An optical pickup apparatus for recording and/or reproducing information for an optical information recording medium, comprising a light converging optical system including a coupling lens and an objective lens, wherein a first diffraction structure is installed on the objective lens, and a second diffraction structure is arranged on the coupling lens, whereby spherical aberration caused by change of ambient temperature is reduced by giving a condition to reduce the number of areas formed in a ring-shaped of the diffractive structure.
Description

BRIEF DESCRIPTION OF THE DRAWING


FIG. 1 is a drawing schematically representing the structure of an optical pickup apparatus PU1 of the present embodiment capable of correct information recording/reproduction using an HD, DVD and CD as different types of optical information recording medium (also called the optical disks).


Claims
  • 1. An optical pickup apparatus comprising: a first light source for emitting a first light flux having a wavelength λ1 (nm);a second light source for emitting a second light flux having a wavelength λ2 (nm) (λ2>λ1); anda light converging optical system including a coupling lens and an objective lens,wherein the light converging system converges a light flux from the first light source onto an information recording surface of a first optical information recording medium through a protective layer having a thickness t1 so that recording and/or reproducing information is conducted for the first optical information recording medium, and converges a light flux from the second light source onto an information recording surface of a second optical information recording medium through a protective layer having a thickness t2 (t1≦t2) so that recording and/or reproducing information is conducted for the second optical information recording medium,wherein the first light source and the second light source are arranged so that a distance between the first light source and the coupling lens become optically equal to a distance between the second light source and the coupling lens,wherein a first diffraction structure is provided on an optical surface of the objective lens through which both the light flux of the wavelength λ1 and that of the wavelength λ2 pass,wherein the following equation (1) is satisfied when d1 denotes an average depth of step structures in the optical axial direction of the first diffraction structure,wherein the following equation (2) is satisfied by the chromatic aberration ΔfB at the time when the light flux of the wavelength λ1 passes through an optical surface of the objective lens,wherein a second diffraction structure is formed on an optical surface of the coupling lens through which both the light flux of the wavelength λ1 and that of the wavelength λ2 pass, andwherein the following equation (3) is satisfied when d2 denotes the average depth of step structures in the optical axial direction of the second diffraction structure: λ1×2/(n1−1)×1.0≦d1(nm)≦λ1×2/(n1−1)×1.3  (1)−0.5≦ΔfB(μm/nm)≦0.5  (2)λ1×2/(n2−1)×1.0≦d2(nm)≦λ1×2/(n2−1)×1.3  (3)−1.5×10−4≦Δn(° C.−1)≦−1.0×10−4  (4)0.04≦ΔW(nm/° C.)≦0.07  (5)−0.08<m2−m1≦0.01  (6)where m1 denotes the magnification of the objective lens at the time of recording or reproduction of information using the first optical information recording medium;f1 indicates the focal distanced of the objective lens at the time of recording or reproduction of information using the first optical information recording medium;m2 shows the magnification of the objective lens at the time of recording or reproduction of information using the second optical information recording medium;n1 represents the refractive index of the material constituting the first diffraction structure with respect to the light of wavelength λ1;n2 represents the refractive index of the material constituting the second diffraction structure with respect to the light of wavelength λ1;Δn represents the change amount of refractive index of the material constituting the coupling lens and the objective lens with respect to the light of wavelength λ1 for a change of ambient temperature; andΔW represents the change amount of wavelength of the first light source.
  • 2. The optical pickup apparatus of claim 1, wherein the following formula is satisfied: 1.5<f1(mm)<3.5  (7)
  • 3. The optical pickup apparatus of claim 1, wherein the light flux reflected from the information recording surface of the first optical information recording medium and the light flux reflected from the information recording surface of the second optical information recording medium enter the light receiving surface of a common optical detector.
  • 4. The optical pickup apparatus of claim 2, wherein the light flux reflected from the information recording surface of the first optical information recording medium and the light flux reflected from the information recording surface of the second optical information recording medium enter the light receiving surface of a common optical detector.
  • 5. The optical pickup apparatus of claim 1, wherein the following equation is satisfied: −⅙≦mG≦− 1/10  (8)wherein mG denotes a magnification of a composite system made up of the objective lens and the coupling lens at the time of information recording or reproduction using the first optical information recording medium.
  • 6. The optical pickup apparatus of claim 2, wherein the following equation is satisfied: −⅙≦mG≦− 1/10  (8)wherein mG denotes a magnification of a composite system made up of the objective lens and the coupling lens at the time of information recording or reproduction using the first optical information recording medium.
  • 7. The optical pickup apparatus of claim 3, wherein the following equation is satisfied: −⅙≦mG≦− 1/10  (8)wherein mG denotes a magnification of a composite system made up of the objective lens and the coupling lens at the time of information recording or reproduction using the first optical information recording medium.
  • 8. The optical pickup apparatus of claim 1, wherein the first light source and the second light source are accommodated in a common package.
  • 9. The optical pickup apparatus of claim 2, wherein the first light source and the second light source are accommodated in a common package.
  • 10. The optical pickup apparatus of claim 3, wherein the first light source and the second light source are accommodated in a common package.
  • 11. The optical pickup apparatus of claim 5, wherein the first light source and the second light source are accommodated in a common package.
  • 12. The optical pickup apparatus of claim 1, further comprising a third light source for emitting a third light flux having a wavelength λ3 (nm) (λ2<λ3) is provided, wherein the light converging optical system converges a light flux from the third light source onto an information recording surface of a third optical information recording medium through a protective layer having a thickness t3 (t2<t3), whereby information recording and/or reproduction is enabled.
  • 13. The optical pickup apparatus of claim 2, further comprising a third light source for emitting a third light flux having a wavelength λ3 (nm) (λ2<λ3) is provided, wherein the light converging optical system converges a light flux from the third light source onto an information recording surface of a third optical information recording medium through a protective layer having a thickness t3 (t2<t3), whereby information recording and/or reproduction is enabled.
  • 14. The optical pickup apparatus of claim 3, further comprising a third light source for emitting a third light flux having a wavelength λ3 (nm) (λ2<λ3) is provided, wherein the light converging optical system converges a light flux from the third light source onto an information recording surface of a third optical information recording medium through a protective layer having a thickness t3 (t2<t3), whereby information recording and/or reproduction is enabled.
  • 15. The optical pickup apparatus of claim 5, further comprising a third light source for emitting a third light flux having a wavelength λ3 (nm) (λ2<λ3) is provided, wherein the light converging optical system converges a light flux from the third light source onto an information recording surface of a third optical information recording medium through a protective layer having a thickness t3 (t2<t3), whereby information recording and/or reproduction is enabled.
  • 16. The optical pickup apparatus of claim 8, further comprising a third light source for emitting a third light flux having a wavelength λ3 (nm) (λ2<λ3) is provided, wherein the light converging optical system converges a light flux from the third light source onto an information recording surface of a third optical information recording medium through a protective layer having a thickness t3 (t2<t3), whereby information recording and/or reproduction is enabled.
Priority Claims (1)
Number Date Country Kind
JP2006-061081 Mar 2006 JP national