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Simulation of contaminates around the solid immersion lens in a near-field optical recording system

机译:模拟近场光学记录系统中固体浸没透镜周围的污染物

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摘要

Accurate predictions of contamination in next-generation optical storage drives are paramount when active gap control is employed. In near-field recording devices, the read/write interface can be on the order of 20-30 nm, which means that the gap could be quite susceptible to contamination. Predictive modeling approaches for studying the behavior of contaminates in nanoscale hydrodynamic interfaces are needed. Here, we present such a model. The interface consists of a flat disk surface translating under a solid immersion lens (SIL) of hemispherical geometry. We present the computational modeling simulation results for nano-scale contaminates around the near-field SIL. The simulation shows that the discrete contaminates actually circumnavigate the SIL/disk interface during operation. We identify and discuss the external influences on the discrete contaminate particle behavior.
机译:当采用主动间隙控制时,准确预测下一代光存储驱动器中的污染至关重要。在近场记录设备中,读/写接口可以在20-30 nm的数量级上,这意味着该间隙很容易受到污染。需要用于研究纳米级流体动力学界面中污染物行为的预测建模方法。在这里,我们提出这样的模型。该界面包括一个平盘表面,该表面在半球形几何体浸没式透镜(SIL)下平移。我们提出了围绕近场SIL的纳米级污染物的计算建模仿真结果。仿真表明,在操作过程中,离散的污染物实际上可以绕过SIL /磁盘界面。我们确定并讨论了对离散污染物颗粒行为的外部影响。

著录项

  • 作者单位
  • 年度 2007
  • 总页数
  • 原文格式 PDF
  • 正文语种 {"code":"en","name":"English","id":9}
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