Claims
- 1. A diffraction grating having a non-concentric grating pattern, comprising N grating portions having stair-like cross-sectional configurations, each grating portion having M steps arrayed in order of their heights along a grating pitch thereof, where M and N are arbitrary positive integers, wherein a ratio of widths of said M steps constituting each grating portion is differentiated at first and second grating portions Pi and Pj on a surface of said diffraction grating, so as to satisfy the following relation:
- W(Pi,1):W(Pi,2): - - - :W(Pi,k): - - - :W(Pi,M).noteq.W(Pj,1):W(Pj,2): - - - :W(Pj,k): - - - :W(Pj,M)
- where W(Pi,k) and W(Pj,k) represent widths of k-th steps in the first and second grating portions Pi and Pj, respectively, i and j are positive integers different from each other and satisfying conditions 1.ltoreq.i.ltoreq.N and 1.ltoreq.j.ltoreq.N, while k is a positive integer satisfying a condition 1.ltoreq.k.ltoreq.M.
- 2. The diffraction grating in accordance with claim 1, wherein said diffraction grating has grating portions having first and second steps, respectively, comprising a higher step and a lower step successively arranged, and satisfying the following relation:
- W(Pi,1):W(Pi,2).noteq.W(Pj,1):W(Pj,2)
- where W(Pi,1) and W(Pj,1) represent widths of said higher steps in said grating portions Pi and Pj, respectively, and W(Pi,2) and W(Pj,2) represent widths of said lower steps in said grating portions Pi and Pj, respectively.
- 3. The diffraction grating in accordance with claim 2, wherein steps constituting said grating portions Pi and Pj satisfy the following relation:
- W(Pi,1):W(Pi,2)=1:1
- W(Pj,1):W(Pj,2).noteq.1:1.
- 4. A diffraction grating comprising N grating portions having stair-like cross-sectional configurations, each grating portion having M steps arrayed in order of their heights along a grating pitch thereof, where M and N are arbitrary positive integers, wherein a ratio of widths of said M steps constituting each grating portion is differentiated at 1st and N-th grating portions P1 and PN disposed at two ends of a surface of said diffraction grating, so as to satisfy the following relation:
- W(P1,1):W(P1,M)=1:1
- W(PN,1):W(PN,M).noteq.1:1
- where W(P1,1) and W(PN,1) represent widths of first steps, being highest steps, in the grating portions P1 and PN, respectively, and W(P1,M) and W(PN,M) represent widths of Mth steps, being lowest steps, in the grating portions P1 and PN, respectively.
- 5. A diffraction grating comprising N grating portions having stair-like cross-sectional configurations, each grating portion having M steps arrayed in order of their heights along a grating pitch thereof, where M and N are arbitrary positive integers, wherein a ratio of widths of said M steps constituting each grating portion is differentiated at first and second grating portions Pi and Pj on a surface of said diffraction grating, so as to satisfy the following relation:
- W(Pi,1):W(Pi,2): - - - :W(Pi,k): - - - :W(Pi,M).noteq.W(Pj,1):W(Pj,2): - - - :W(Pj,k): - - - :W(Pj,M)
- where W(Pi,k) and W(Pj,k).represent widths of k-th steps in the first and second grating portions Pi and Pj, respectively, i and j are positive integers different from each other and satisfying conditions 1.ltoreq.i.ltoreq.N and 1.ltoreq.j.ltoreq.N, while k is a positive integer satisfying a condition 1.ltoreq.k.ltoreq.M, and said diffraction grating is a reflection type grating.
- 6. An optical pickup apparatus comprising:
- a light source for emitting a light beam;
- a diffraction grating for receiving the light from said light source to divide it into three light beams, said diffraction grating comprising N grating portions each having a stair-like cross-sectional configuration of M steps, where M and N are arbitrary positive integers;
- a condensing optical system for receiving said three light beams from said diffraction grating to converge them on an information medium; and
- a beam divider for receiving light from said information medium to divide the light from said information medium;
- wherein a ratio of widths of said M steps constituting each grating portion is differentiated at first and second grating portions Pi and Pj on a surface of said diffraction grating, so as to satisfy the following relation:
- W(Pi,1):W(Pi,2): - - - :W(Pi,k): - - - :W(Pi,M).noteq.W(Pj,1):W(Pj,2): - - - :W(Pj,k): - - - :W(Pj,M)
- where W(Pi,k) and W(Pj,k) represent widths of k-th steps in the first and second grating portions Pi and Pj, respectively, i and j are positive integers different from each other and satisfying conditions 1.ltoreq.i.ltoreq.N and 1.ltoreq.j.ltoreq.N, while k is a positive integer satisfying a condition 1.ltoreq.k.ltoreq.M.
- 7. The optical pickup apparatus in accordance with claim 6, wherein said diffraction grating has grating portions having first and second steps, respectively comprising a higher step and a lower step successively arranged, and satisfying the following relation:
- W(Pi,1):W(Pi,2).noteq.W(Pj,1):W(Pj,2)
- where W(Pi,1) and W(Pj,1) represent widths of said higher steps in said grating portions Pi and Pj, respectively, and W(Pi,2) and W(Pj,2) represent widths of said lower steps in said grating portions Pi and Pj, respectively.
- 8. The optical pickup apparatus in accordance with claim 6, wherein steps constituting said grating portions Pi and Pj satisfy the following relation:
- W(Pi,1):W(Pi,2)=1:1
- W(Pi,1):W(Pi,2).noteq.1:1.
- 9. The optical pickup apparatus in accordance with claim 8, wherein said grating portion Pj receives the light beam emitted from said light source at a smaller incident angle, and said grating portion Pi receives the light beam emitted from said light source at a larger incident angle.
- 10. The optical pickup apparatus in accordance with claim 6, wherein said diffraction grating is a reflection type grating.
- 11. The optical pickup apparatus in accordance with claim 6, wherein the light reflected from said information medium is led to a hologram to be incident as two first order diffraction beams on a photodetector to obtain information signals, said hologram being arranged so that said two first order diffraction beams form focal points or focal lines at the front and rear sides of said photodetector.
Priority Claims (1)
Number |
Date |
Country |
Kind |
4-034657 |
Feb 1992 |
JPX |
|
Parent Case Info
This application is a division of application Ser. No. 08/019,537 filed Feb. 18, 1993, now U.S. Pat. No. 5,400,311, issued on Mar. 21, 1995.
US Referenced Citations (4)
Number |
Name |
Date |
Kind |
5111448 |
Komma et al. |
May 1992 |
|
5113067 |
Nakai et al. |
May 1992 |
|
5221835 |
Setani |
Jun 1993 |
|
5227915 |
Grossinger et al. |
Jul 1993 |
|
Foreign Referenced Citations (3)
Number |
Date |
Country |
63-191328 |
Aug 1988 |
JPX |
2185722 |
Jul 1990 |
JPX |
4212730 |
Aug 1992 |
JPX |
Divisions (1)
|
Number |
Date |
Country |
Parent |
19537 |
Feb 1993 |
|