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High speed sub-micron bit detection using tapered aperture mounted optical slider flying above a patterned metal medium

机译:使用安装在带图案的金属介质上方的锥形孔径安装的光学滑块进行高速亚微米位检测

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摘要

Rapid advances in the development of the digital network society have necessitated both large capacity and higher data transfer rate for every type of digital storage equipment. Proximity optical recording based on the near-field interaction principle promises to provide breakthroughs in overcoming rigid optical diffraction limits and wave length shortening limits. We have previously presented a compact optical head assembly consisting of a combination of a pyramidal hole processed silicon slider and light-wave guide combined suspension. Attaining higher recording density requires both a much smaller sized aperture and a highly efficient laser power delivery mechanism. To satisfy these requirements, we have introduced a planar lens and tapered aperture processed optical slider, delivering laser power through a single mode optical fiber, and we have demonstrated submicron size (150-200 nm-long) bit signals at more than a 10 MHz frequency band.
机译:数字网络社会发展的迅速进步要求每种类型的数字存储设备都需要大容量和更高的数据传输速率。基于近场相互作用原理的近程光学记录有望在克服刚性光学衍射极限和波长缩短极限方面提供突破。我们之前已经介绍了一种紧凑的光学头组件,该组件由金字塔形孔加工的硅滑块和光波导组合悬架组成。要获得更高的记录密度,既需要小得多的孔径,又需要高效的激光功率传输机制。为了满足这些要求,我们推出了一种平面透镜和经过锥孔处理的光学滑块,可通过单模光纤传输激光功率,并展示了超过10 MHz的亚微米尺寸(长150-200 nm)位信号频带。

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