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Surface-Plasmon Resonance Characterization of a Near-Field Transducer

机译:近场换能器的表面等离子体共振特性

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Surface-plasmon resonance of a lollipop near-field transducer integrated in a planar solid immersion mirror for heat-assisted magnetic recording has been studied by a pump-probe photo-thermal measurement without medium coating and by recording on a phase-change medium. The resonant behaviors, including the resonant wavelength, the Q factor, on and off resonance photo-thermal signal, are consistent with our simulations. For lollipops of 190 nm in disk diameter and 20 nm thick, there are two resonant modes in the measured spectroscopic range (710 nm-950 nm). Recording on a phase-change medium shows that the wavelength of the short resonant mode is not sensitive to the presence of the medium while the wavelength of the long resonant mode exhibits significant red-shift. On resonance, the plasmon efficiency enables the pronounced near-field transducer recording.
机译:集成在平面固体浸没镜中用于热辅助磁记录的棒棒糖近场换能器的表面等离子体共振已经通过无介质涂层的泵浦探针光热测量以及在相变介质上进行记录进行了研究。谐振行为,包括谐振波长,Q因子,开和关谐振光热信号,与我们的仿真一致。对于圆盘直径为190 nm,厚度为20 nm的棒棒糖,在测得的光谱范围(710 nm至950 nm)中有两种共振模式。在相变介质上记录表明,短共振模式的波长对介质的存在不敏感,而长共振模式的波长则显示出明显的红移。共振时,等离激元效率可实现明显的近场换能器记录。

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