Paper
3 January 2005 The reliability test of center-aperture-detection-type magnetically induced super-resolution magneto-optical disk
Yoshihisa Suzuki, Sayoko Tanaka, Morio Nakatani, Satoshi Sumi, Sakae Tanemura
Author Affiliations +
Abstract
The Center Aperture Detection (CAD) type Magnetically Induced Super-resolution (MSR) Magneto-optical Disk is one of method to overcome the limitation of optical resolution. For a reliability of the disk, it is important to investigate the stability of the magneto-static coupling between a readout layer and a recording layer through readout characteristics. In this paper, we tested the reliability of CAD tMSR magneto-optical disk. We used iD PHOTO disk for the CAD MSR magneto-optical disk. In the disk, the data is recorded on land and groove with a track pit of 0.6 µm and a bit length of 0.235 µm, by a method of laser pumped magnetic field modulation with an optical pickup of NA=0.62, λ=650 nm. The reliability was examined by PI error lines under the test condition of 80 °C-90 %RH. There were no considerable changes in read/write characteristics up to with an aging time of 2000 hour. The lifetime of the disk was estimated more than 7000 hour under the condition. By a method of the Arrhenius plots, we assumed that the lifetime of the disk would be more than 100 years under the condition of room temperature. We also confirmed that there were no significant changes in mechanical characteristics of the disks. These results show the disk using magneto-static coupling has sufficient reliability for consumer use.
© (2005) COPYRIGHT Society of Photo-Optical Instrumentation Engineers (SPIE). Downloading of the abstract is permitted for personal use only.
Yoshihisa Suzuki, Sayoko Tanaka, Morio Nakatani, Satoshi Sumi, and Sakae Tanemura "The reliability test of center-aperture-detection-type magnetically induced super-resolution magneto-optical disk", Proc. SPIE 5643, Advances in Optical Data Storage Technology, (3 January 2005); https://doi.org/10.1117/12.571733
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KEYWORDS
Reliability

Computer aided design

Modulation

Magnetism

Super resolution

Error analysis

Clocks

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