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首页> 外文期刊>Japanese Journal of Applied Physics. Part 1, Regular Papers, Brief Communications & Review Papers >Approach of Improving Disk Performance to High-Quality Gap Control in Near-Field Optical Disk Drive System
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Approach of Improving Disk Performance to High-Quality Gap Control in Near-Field Optical Disk Drive System

机译:在近场光盘驱动器系统中提高磁盘性能以进行高质量间隙控制的方法

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摘要

Near-field technology has been expected as one of the promising techniques for increasing the recording density in an optical storage disk system since it was introduced. In a near-field optical disk drive system (NFDD), the gap between a disk and a solid immersion lens (SIL) is required to be less than one-tenth laser wavelength with a high accuracy in order to generate an evanescent wave for reading or writing a signal. This is because the gap performance has detrimental effects on the RF amplitude vibration in a reading channel and on the signal laser peak power vibration in a writing channel. In this study, we first clarify whether specific disk resonances cause the deterioration of the gap performance in the NFDD. We then demonstrate an approach of improving the disk mechanical performance in order to achieve a highly precise gap performance. Finally, we investigate a high-performance gap servo system by utilizing the disk substrate suitable for the NFDD.
机译:自从引入近场技术以来,近场技术被认为是增加光存储盘系统中记录密度的有前途的技术之一。在近场光盘驱动系统(NFDD)中,磁盘与固态浸没透镜(SIL)之间的间隙需要高精度小于激光波长的十分之一,以便产生an逝波以供读取或写一个信号。这是因为,间隙性能对读取通道中的RF振幅振动以及写入通道中的信号激光峰值功率振动有不利影响。在这项研究中,我们首先澄清特定的磁盘共振是否会导致NFDD中间隙性能的下降。然后,我们演示了一种改善磁盘机械性能的方法,以实现高精度的间隙性能。最后,我们通过利用适用于NFDD的磁盘基板研究高性能间隙伺服系统。

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