DocumentCode :
2167696
Title :
Design of DWDD disk with groove recording for high density and wide recording power tolerance
Author :
Miki, Takeshi ; Fujita, Goro ; Imanishi, Shingo ; Furuki, Motohiro ; Sakamoto, Tetsuhiro
Author_Institution :
Opt. Disc Dev. Div., Sony Corp., Tokyo, Japan
fYear :
2002
fDate :
2002
Firstpage :
45
Lastpage :
47
Abstract :
We previously reported the performance of high density magneto-optical (MO) recording with NA 0.85 and blue laser using land/groove substrate (T. Miki et al, Proc. SPIE vol. 4342, pp. 220-227, 2002). In that report, we confirmed that the groove shape of the substrate improves the recording power tolerance using land/groove substrate. DWDD (domain wall displacement detection) MO (T. Shiratori et al, J. Magn. Soc. Jpn., vol. 22, supp. no. S2, pp. 47-50, 1988) is the most useful medium for achieving high linear density recording without using higher NA objective lenses. Land/groove recording using DWDD has already been reported (S. Kai et al, Jpn. J. Appl. Phys. vol. 38, pp. 1768-1773, 1999; G. Fujita et al, Tech. Dig. ISOM ´01, pp. 84-85, 2001; T. Sakamoto et al, Tech. Dig. ODS 2001, pp. 73-75, 2001). Securing a wide recording power tolerance is very important to realize a high density optical storage system. From this point of view, we investigated DWDD MO with groove recording using blue laser and NA 0.60 optics. We optimized DWDD media for groove recording and improved the groove shape of the substrate to obtain wider recording power tolerance at higher linear density.
Keywords :
magnetic domain walls; magneto-optical recording; optical disc storage; optical signal detection; DWDD MO; DWDD disk design; blue laser; domain wall displacement detection; groove recording; groove shape; high density magneto-optical recording; land/groove recording; land/groove substrate; linear recording density; objective lenses; optical storage system density; optics NA; recording density; recording power tolerance; Atomic force microscopy; Atomic measurements; Dielectric substrates; Disk recording; Force measurement; Magnetic domain walls; Plasma density; Plasma measurements; Shape; Surface treatment;
fLanguage :
English
Publisher :
ieee
Conference_Titel :
Optical Memory and Optical Data Storage Topical Meeting, 2002. International Symposium on
Print_ISBN :
0-7803-7379-0
Type :
conf
DOI :
10.1109/OMODS.2002.1028562
Filename :
1028562
Link To Document :
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