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Spacing Dependency of Near Field Recording and Its Application

机译:近场记录的空间相关性及其应用

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摘要

The head disk spacing in state of the art hard disk drives has been successfully scaled down to a couple of nanometers and is accurately controlled, providing a workable condition for near field devices, such as near field transducers (NFT) and plasmonic sensors. Heat assisted magnetic recording (HAMR) uses an NFT to generate the localized electromagnetic field to heat the media above the Curie temperature. The coupling between the NFT and the magnetic media has a strong spacing dependency, explained by the nature of the evanescent field. In this paper, we discuss how the spacing dependency is accurately calibrated and the applications of this spacing dependency in HAMR, such as static and transient protrusion measurement and compensation and fly height variation measurement.
机译:现有技术的硬盘驱动器中的磁头磁盘间距已成功缩小到几纳米,并得到了精确控制,从而为近场设备(如近场换能器(NFT)和等离子传感器)提供了可行的条件。热辅助磁记录(HAMR)使用NFT生成局部电磁场,以将介质加热到居里温度以上。 NFT和磁性介质之间的耦合具有很强的间距依赖性,这由van逝场的性质解释。在本文中,我们讨论了如何正确校准间距依赖性以及此间距依赖性在HAMR中的应用,例如静态和瞬态突出测量以及补偿和飞行高度变化测量。

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