A Study on Key Technologies to Realize Magneto-Optical Storage of Over 7 GBytes in CD Sized Disk
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概要
- 論文の詳細を見る
Recently, many types of high-density recording technologies for future MO (Magneto-Optical) storage have been reported. MSR (Magnetically Induced Super Resolution) technology is one of the most promising candidates, and over ten types of MSR technologies have been already proposed. However, they are not well-discussed from the viewpoint of total recording technology which would include the recording and readout methods, the pick-up technology and the signal processing technology. Key technologies for realizing MO storage of over 7 GBytes in a CD-sized disk using a red laser are proposed, and the experimental results pertaining to each key technology are described. The write/read characteristics were examined for the CAD (Center Aperture Detection)-MSR disk. From the characteristics of the CAD-MSR disk combined with laser pumped magnetic field modulation recording, it was shown that land/groove (0.7μm width) recording with the linear density of 0.27μm/bit and track pitch below 0.7μm can be realized. It was also shown that CAD-MSR disk is well combined with an OSR (Optical Super Resolution) pick up, laser pumped read-out and PRML (Partial Response Maximum Likelihood) technologies which are very useful to achieve a high density MO disk. Using CAD-MSR disk combined with above technologies together, high density write/read with a bit length of 0.2μm and a track pitch of 0.6μm should be realized with using the laser of 635 nm wavelength. Applying the CAD-MSR disks to a CD sized MO disk, the capacity becomes over 7 GBytes (Format efficiency: 80%), which is 20 times higher than 5.25 inches MO disk and 1.5 times than DVD-ROM.
- 社団法人電子情報通信学会の論文
- 1997-09-25
著者
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高橋 昭彦
Department Of Radiological Technology School Of Health Sciences Kyushu University
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SUMI Satoshi
Hypermedia Research Center, Sanyo Electric Co.Ltd.
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高橋 昭彦
Kyushu Univ. Fukuoka Jpn
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Ohta N
Recording Media Research Laboratory Hitachi Maxell Ltd.
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Sumi S
Sanyo Electric Co. Ltd. Gifu
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Sumi Satoshi
Hypermedia Research Center Sanyo Electric Co. Ltd.
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Aoki Takashi
School Of Health Sciences Kyushu University
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Ohta Norio
Recording Media Research Laboratory Hitachi Maxell Ltd.
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Suzuki Nobuhiro
The Faculty Of Engineering Tokyo Institute Of Technology
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TORAZAWA Kenji
Hypermedia Research Center, SANYO Electric Co., Ltd.
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Suzuki N
Corporate Research & Development Center Toshiba Corporation
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TANAKA Yasuhito
Giga Byte Laboratories, Sony Corporation
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MURAKAMI Yoshiteru
Optical Disk Systems Development Center, Sharp Corporation
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YONEZAWA Seiji
Highwits Technology Ltd.
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TANAKA Yasuhito
Multimedia Systems R amp D Division, Hitachi, Ltd.
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TAKAHASHI Akira
Precision Technology Development Center, Sharp Corporation
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MURAKAMI Yoshiteru
Precision Technology Development Center, Sharp Corporation
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Torazawa K
Hypermedia Research Center Sanyo Electric Co. Ltd.
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Torazawa Kenji
Hypermedia Research Center Sanyo Electric Co. Ltd.
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Suzuki N
Hitachi Ltd. Tokyo Jpn
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Tanaka Y
National Inst. Infectious Diseases Tokyo Jpn
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Murakami Yoshiteru
Optical Disk Systems Development Center Sharp Corporation
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Takahashi Akira
Precision Technology Development Center Sharp Corporation
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Takahashi Akira
Japan Atomic Energy Research Institute Dep. Of Fusion Plasma Research:(present Address) Toyo Denshi
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Akimoto Tadashi
Faculty Of Engineering Hokkaido University
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Aoi Tatsufumi
Department Of Engineering Kyushu University
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