用于数据存储的高通量光学近场孔径阵列

P. N. Minh, T. Ono, S. Tanaka, K. Goto, M. Esashi
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引用次数: 4

摘要

创建和利用亚波长大小的强光源开辟了一个新的领域——近场光学。近场光学最具吸引力的应用之一是下一代光数据存储。为了利用高通量纳米级光源阵列在介质上写入和读取比特,对具有高密度和高数据传输速率的光存储器提出了很高的要求。本文提出了一种用于光学近场存储头的混合激光和孔径阵列,即VCSEL/NSOM。本文系统地研究了硅微加工尖端阵列近场光的光学性能。在相变介质上使用所制备的结构进行写入和读取比特的主要结果进行了演示。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
High throughput optical near-field aperture array for data storage
To create and utilize a strong light source with sub-wavelength size has opened up a new field, the near-field optics. One of the most attractive applications of the near-field optics is the next generation optical data storage. The optical memory with high density and high data transfer rate is highly demanded to utilize an array of high throughput nano-scaled light sources for writing and reading bits on a medium. In this paper, we propose a hybrid laser and aperture array for optical near-field memory head, namely VCSEL/NSOM. A systematic investigation of the optical performance of the near-field light at the apertures of the Si micromachined tip array is presented. A primarily result of writing and reading bits on a phase change medium using the fabricated structure is demonstrated.
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