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Thermal Effect of a Thin Overcoating Layer Subject to Laser Heating

机译:激光加热下薄涂层的热效应

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This paper concerns the effect of a thin overcoating layer on the temperature increase in heat-assisted magnetic recording disk structure induced by laser heating. The optical absorption model, which derived from Maxwell's equation, is applied to quantify local energy absorption by the media. The numerical simulations indicate that the presence of a 2-nm overcoating layer results in additional 5% temperature increase in the disk, compared with the same media structure without overcoating layer. This temperature increase is resulted from the laser energy absorbed by the overcoating layer and the low thermal conductivity of the overcoating layer. The temperature difference between the overcoating layer and its neighbor layer is negligible small. This paper indicates that besides its mechanical properties, the thermal and optical properties of the overcoating material are important design factors.
机译:本文涉及薄涂层对激光加热引起的热辅助磁记录盘结构温度升高的影响。从麦克斯韦方程导出的光吸收模型用于量化介质对局部能量的吸收。数值模拟表明,与没有覆盖层的相同介质结构相比,存在2 nm覆盖层会导致磁盘中温度额外增加5%。该温度升高是由外涂层吸收的激光能量和外涂层的低导热率导致的。外涂层及其相邻层之间的温差可忽略不计。本文表明,除了其机械性能外,外涂层材料的热和光学性能也是重要的设计因素。

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