Related Experiment Video
Updated: Jul 3, 2026

12:44
CD4+ T-Lymphocyte Capture Using a Disposable Microfluidic Chip for HIV
Published on: October 1, 2007
Blue/DVD/CD compatible optical head
Ryuichi Katayama1, Yuichi Komatsu
1System Jisso Research Laboratories, NEC Corporation, 1753, Shimonumabe, Nakahara-ku, Kawasaki 211-8666, Japan. r-katayama@bl.jp.nec.com
Applied Optics
|August 2, 2008
Summary
Two high-density optical disk systems using blue laser diodes show compatibility with existing discs. Option 1 (HD DVD) is preferred, but Option 2 (Blu-ray Disc) is also acceptable.
Area of Science:
- Optical Engineering
- Data Storage Technologies
Background:
- Digital Versatile Disc (DVD) and Compact Disc (CD) compatibility is crucial for next-generation optical storage.
- High-density optical disk systems require advanced optical heads and precise aberration correction.
Purpose of the Study:
- To evaluate the disc-read compatibility of two high-density optical disk system options using blue laser diodes.
- To assess the performance of optical heads with multiple laser diodes and adaptive aberration correction.
Main Methods:
- Utilized an optical head with three laser diodes (405 nm, 660 nm, 785 nm).
- Implemented an objective lens magnification change for spherical aberration correction due to varying protective layer thickness (0.6 mm for Option 1, 0.1 mm for Option 2).
- Employed a wavelength-selective aperture to control the numerical aperture (0.65 for Option 1, 0.85 for Option 2).
Main Results:
- Both Option 1 (HD DVD) and Option 2 (Blu-ray Disc) demonstrated compatibility with DVD and CD formats.
- Option 1, with a 0.65 numerical aperture and 0.6 mm disc, was found to be more preferable.
- Option 2, featuring a 0.85 numerical aperture and 0.1 mm disc, was deemed acceptable for compatibility.
Conclusions:
- High-density optical disk systems utilizing blue laser diodes can achieve backward compatibility with existing optical media.
- Adaptive optical head designs effectively correct for spherical aberrations arising from different disc protective layer thicknesses.
- While Option 1 offers superior preference, Option 2 presents a viable alternative for achieving disc compatibility.

