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Investigation of near-field heat transfer of multilayered structures in heat-assisted magnetic recording (HAMR)

机译:热辅助磁记录(HAMR)中多层结构的近场传热研究

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Heat-assisted magnetic recording (HAMR) is a promising method to increase the area density to 1 Tb/in2 in hard disk drives. In HAMR, a pulsed laser is used to heat the magnetic medium above its Curie temperature. High temperatures can cause lubricant depletion, degradation, and carbon overcoat damage at the head disk interface. Near-field radiation effects in HAMR are important to contribute the heat transfer and hence the flying ability at the head disk interface. Therefore investigation of the near-field heat transfer is essential to optimize the head disk interface. An equivalent simulation model of the head disk interface for studying the radiative heat transfer is provided in this paper. The head can be simplified as a nanosphere, while the disk can be simplified to a semi-infinite multilayer structure, the thickness of every layer in the multilayer structure is nano-scale. And the distance between head and disk is smaller than 10nm. The near field heat transfer problem can be solved by combining the dyadic Green's functions with the fluctuations electrodynamics, and the scattering matrix approach is used in the multilayer structure. Considering both the nonmagnetic media and the magnetic media, several numerical computations are conducted.
机译:热辅助磁记录(HAMR)是一种将硬盘驱动器中的区域密度提高到1 Tb / in2的有前途的方法。在HAMR中,脉冲激光用于将磁性介质加热到居里温度以上。高温会导致磁头磁盘接口处的润滑剂耗尽,降解和碳保护层损坏。 HAMR中的近场辐射效应对于传热以及因此在磁头磁盘界面的飞行能力至关重要。因此,对近场传热的研究对于优化磁头磁盘界面至关重要。本文提供了用于研究辐射传热的磁头磁盘接口的等效仿真模型。磁头可以简化为纳米球,而圆盘可以简化为半无限多层结构,多层结构中每一层的厚度均为纳米级。磁头和磁盘之间的距离小于10nm。通过将二进格林函数和波动电动力学结合起来可以解决近场传热问题,并且在多层结构中使用了散射矩阵方法。同时考虑非磁性介质和磁性介质,进行了一些数值计算。

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