Numerical Analysis of Tracking Error on High Density Optical Disks by Vector Diffraction Model

Pei-Yih Liu, H. Shieh
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Abstract

High density optical disks are progressing rapidly recently. Shrinking the track pitch and the size of recorded pits are among the key technologies to attain higher density storage. However, the decrease in track pitch requires that the tracking servo control system be more precisely than conventional system. Scalar diffraction theory is usually used to calculate the optical readout of conventional optical disk storage system. However, scalar diffraction theory is valid only as long as the wavelength of the incident light is small compared with characteristic transverse dimensions of the scattering structure. As the transverse dimension of track pitch is no longer larger than the wavelength for higher density optical disks, vector diffraction theory1,2 becomes necessary to analyze the optical readout.
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基于矢量衍射模型的高密度光盘跟踪误差数值分析
高密度光盘近年来发展迅速。缩小磁道间距和记录凹坑的大小是实现高密度存储的关键技术之一。然而,跟踪距的减小要求跟踪伺服控制系统比传统系统更精确。标量衍射理论通常用于计算传统光盘存储系统的光读出。然而,标量衍射理论只有在入射光的波长比散射结构的特征横向尺寸小的情况下才有效。对于密度较高的光盘,由于磁道间距的横向尺寸不再大于波长,因此需要矢量衍射理论1,2来分析光学读出。
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