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Characterization of near field transducers for high density heat assisted magnetic recording combined with FePt recording media

机译:结合FePt记录介质的高密度热辅助磁记录近场换能器的特性

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This paper presents a thorough experimental analysis of the use of nano-apertures as near field transducers (NFT) with FePt as a magnetic material in the near field. C-shaped nano-apertures can be used an efficient near field transducer (NFT) in heat assisted magnetic recording (HAMR). As the recording medium in HAMR recording is a magnetic material, the interaction of optical fields with a NFT will be different compared to the situation of a NFT in isolation. To the best of our knowledge, this is the first study to explore the impact of magnetic media proximity on efficiency and optical characteristics of NFTs experimentally. Different shaped nano-apertures including “C”, “I”, and square nano-apertures having equal areas were fabricated in a gold layer deposited on a SiO2 substrate. We have compared the transmission characteristics of all these nano-apertures and have studied the localized plasmonic effect causing high optical transmission in “C” and “I” shaped nano-apertures as compared to square nano-apertures.
机译:本文介绍了使用纳米孔作为近场换能器(NFT),并以FePt作为近场的磁性材料的详尽实验分析。 C形纳米孔径可用于热辅助磁记录(HAMR)中的高效近场换能器(NFT)。由于HAMR记录中的记录介质是磁性材料,因此与单独隔离NFT的情况相比,光场与NFT的相互作用将有所不同。据我们所知,这是第一个通过实验探索磁性介质接近度对NFT效率和光学特性的影响的研究。在SiO 2 衬底上沉积的金层中制造了具有相等面积的不同形状的纳米孔径,包括“ C”,“ I”和正方形纳米孔径。我们比较了所有这些纳米孔径的透射特性,并研究了与方形纳米孔径相比在“ C”形和“ I”形纳米孔径中引起较高光学透射的局部等离子体效应。

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