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HAMR EMULATION USING PLASMONIC SERS SENSOR AS NEAR FIELD TRANSDUCER

机译:使用等离子传感器作为近场传感器的HAMR仿真

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摘要

A plasmonic Surface-enhanced Raman Spectroscopy (SERS) sensor has been used for emulation of Near Field Transducer (NFT) in Heat-Assisted Magnetic Recording (HAMR). Laser heating mechanism by the sensor is the same as that by NFT with electro-magnetic near-field or plasmonic field, which is different from far field heating. Heating behavior for a lubricant film on a carbon overcoat for a hard disk medium was observed using Surface-enhanced Raman Spectroscopy with the plasmonic SERS sensor. Spectral change of lube films in laser heating with a continuous power changer was measured with heating temperature, calculated by anti-Stokes/Stokes intensity ratio in Raman spectra. As a result, it is found that the lubricant film composed of a tetraol perfluoro-polyether (PFPE) is evaporated above 290℃, which shows good agreement with that by TGA (Thermogravimetric Analysis). The evaporation occurs in wide range of spacing between the lubricant film and the SERS sensor from 0 (contact) to 50nm, and more. After laser heating, lubricant film with free surface in a large gap area, i.e. spacing of 3nm, is recovered with elapsed time. However it is difficult to be recovered in confined (contact) area, because lubricant mobility is small. Lost lubricant can be recovered in head flying by surface diffusion or centrifugal force during disk rotation.
机译:等离子体表面增强拉曼光谱(SERS)传感器已用于模拟热辅助磁记录(HAMR)中的近场换能器(NFT)。传感器的激光加热机制与电磁近场或等离子场的NFT相同,这与远场加热不同。使用带有等离子SERS传感器的表面增强拉曼光谱,观察了硬盘介质的碳外涂层上润滑膜的加热行为。用加热功率测量用连续功率变换器进行激光加热时润滑油膜的光谱变化,该温度通过拉曼光谱中的反斯托克斯/斯托克斯强度比来计算。结果发现,由四醇全氟聚醚(PFPE)构成的润滑膜在290℃以上蒸发,这与TGA(热重分析)显示出良好的一致性。蒸发发生在润滑剂膜和SERS传感器之间从0(接触)到50nm甚至更大的间距范围内。激光加热后,随着时间的流逝,回收具有自由间隙大的间隙区域即3nm的间隔的润滑膜。但是,由于润滑剂的迁移率小,因此难以在密闭的(接触)区域进行回收。磁盘旋转过程中,通过表面扩散或离心力可以在磁头飞行中回收丢失的润滑剂。

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