Title :
High Speed Dual-Layer Blu-Ray Recordable Disc Without Silver/Silver Alloy Semi-Reflective Layer
Author :
Kuo, Yuh-Rur ; Hung, Yung-Hui ; Li, Cheng-Pi ; Huang, Yi-Kai ; Li, Kun-Long
Author_Institution :
R&D Dept., CMC Magnetics Corp., Taoyuan, Taiwan
fDate :
3/1/2011 12:00:00 AM
Abstract :
In this paper, a design of dual-layer Blu-ray recordable (DL BD-R) disc without silver or silver alloy semi-reflective layer is introduced. Five potential dielectric reflector materials, including the AlN, BN, Nb2O5, TiO2 and ZnS-SiO2 are evaluated and tested to compensate the reflectivity of layer 1 after removing the metallic semi-reflective layer. With the help of optical simulation software, reflectivity in both layers could be optimized by fine tuning thickness of each material and the recording performance was examined in each condition. Furthermore, a simplified layer 1 stack was proposed and evaluated. The disc with only Nb2O5 layer as semi-reflector in layer 1 can achieve the desired performance of 6× recording speed and provide the benefit of better mass production from the simplified practical film structure point of view.
Keywords :
aluminium compounds; boron compounds; dielectric thin films; niobium compounds; optical disc storage; silicon compounds; sputtered coatings; titanium compounds; zinc compounds; AlN; BN; DL BD-R disc; Nb2O5; TiO2; ZnS-SiO2; film structure; high speed dual-layer blu-ray recordable disc; mass production; metallic semireflective layer; optical simulation software; potential dielectric reflector materials; silver-silver alloy semi-reflective layer; Dielectrics; Heating; Jitter; Materials; Silver; Simulation; Dual-layer Blu-ray recordable (DL BD-R) disc; non-silver semi-reflective layer; optical simulation; sputtering;
Journal_Title :
Magnetics, IEEE Transactions on
DOI :
10.1109/TMAG.2010.2100811