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Optical and thermal designs of near field transducer for heat assisted magnetic recording

机译:用于热辅助磁记录的近场换能器的光学和热设计

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Heat assisted magnetic recording (HAMR) is considered one of the new generation hard drive recording technologies for increasing the data storage density. At its core, HAMR devices are dependent on plasmonic nano antennas, called near field transducers (NFT) to locally deliver heat to storage media. Hence, the design of NFT is crucial for an optimized HAMR device. Several types of NFT designs have been studied through optical and thermal simulations and are quantified using appropriate figures of merit. In addition, the possibility of exciting NFTs at a longer wavelength (1550 nm) has been studied, and it is found that there is a significant improvement of the thermal performance. The effect of having tapers in the geometry of the NFT and their role in improving the NFT thermal performance are also discussed. These studies point to different directions that performance of NFT can be improved. (C) 2018 The Japan Society of Applied Physics
机译:热辅助磁记录(HAMR)被认为是用于增加数据存储密度的新一代硬盘驱动器记录技术之一。在其核心方面,HAMR设备依赖于称为近场换能器(NFT)的等离子纳米天线来将热量局部传递到存储介质。因此,NFT的设计对于优化HAMR设备至关重要。已通过光学和热仿真研究了几种类型的NFT设计,并使用适当的品质因数对其进行了量化。另外,已经研究了在更长的波长(1550nm)处激发NFT的可能性,并且发现热性能有显着改善。还讨论了NFT几何形状逐渐变细的效果及其在改善NFT热性能中的作用。这些研究指出了可以改善NFT性能的不同方向。 (C)2018日本应用物理学会

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