Simulations of heat generation and conduction on a land/groove disc

Y. Nishi, T. Shimano, H. Kando
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引用次数: 2

Abstract

We applied the finite-difference time-domain (FDTD) method to an optical disc to estimate the energy absorption inside a multi-layered disc with land-and-groove structure. The FDTD method was developed to measure the electromagnetic fields generated by diffraction in a near-field. Afterwards we analyzed the heat conduction. We found that temperature transition depended not only on conductivity but on the initial distribution of the heat and on disc geometry.
陆地/槽盘面上热生成和传导的模拟
应用时域有限差分(FDTD)方法对具有陆沟结构的多层光盘内部的能量吸收进行了估计。提出了用时域有限差分法测量近场衍射电磁场的方法。然后我们分析了热传导。我们发现,温度转变不仅取决于电导率,而且取决于热的初始分布和盘的几何形状。
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