首页> 外文期刊>Journal of the Optical Society of America, A. Optics, image science, and vision >Cover-layer-protected solid immersion lens-based near-field recording with an annular aperture
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Cover-layer-protected solid immersion lens-based near-field recording with an annular aperture

机译:基于保护层的具有环形光圈的基于固体浸没透镜的近场记录

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Currently, data recording density in cover-layer-protected near-field-recording (NFR) and multiple-recording layered NFR optical data storage technology is limited by the difficulty in obtaining high-refractive-index cover layer materials. In addition, with the exception of improved resolution, the higher the numerical aperture (NA), the poorer the optical characteristics. However, in this study, we present novel cover-layer-protected solid immersion lens (SIL)-based NFR optics that provide superior optical performance with higher recording density, greatly enhanced focal depth, and less sensitivity to near-field air-gap-distance variation by modulating the amplitude and phase in the entrance pupil using annular pupil zones. Using an annular aperture consisting of three concentric annular zones to effect amplitude and phase modulation, the 1.45 NA cover-layer-protected SIL-based NFR optics achieved a data recording density as high as that of conventional 1.80 NA SIL-based NFR optics. These 1.45 NA optics yielded a full-width at half-maximum (FWHM) spot size of 0.315lambda, a focal depth of 0.82lambda, a focused beam spot sensitivity to air-gap-distance within the near-field region of 0.04lambda, and a sidelobe intensity lower than 7percent. In comparison with conventional 1.80 NA SIL-based NFR optics, the annular aperture optics achieved 3.5 times longer focal depth and much lower focused beam spot sensitivity to air-gap distance while maintaining the same high resolution. The introduction of this novel specially designed NFR optics could greatly improve data capacity in multiple-recording layered NFR.
机译:当前,在保护层保护的近场记录(NFR)和多层记录的NFR光学数据存储技术中的数据记录密度受到难以获得高折射率覆盖层材料的限制。此外,除了提高分辨率外,数值孔径(NA)越高,光学特性越差。但是,在这项研究中,我们提出了一种基于覆盖层保护的基于固态浸没透镜(SIL)的NFR光学器件,该光学器件具有出色的光学性能,具有更高的记录密度,极大地提高了焦深并且对近场气隙的敏感度更低通过使用环形光瞳区域调制入射光瞳中的幅度和相位来改变距离变化。使用由三个同心环形区域组成的环形孔来实现幅度和相位调制,1.45 NA覆盖层保护的基于SIL的NFR光学器件的数据记录密度与传统的1.80 NA SIL的NFR光学器件一样高。这些1.45 NA光学元件产生的半高全宽(FWHM)光斑尺寸为0.315λ,聚焦深度为0.82λb,聚焦束光斑对近场区域内的气隙距离的灵敏度为0.04λ,旁瓣强度低于7%。与传统的基于1.80 NA SIL的NFR光学器件相比,环形光阑光学器件获得了3.5倍的焦深和更低的聚焦光束点对气隙距离的灵敏度,同时保持了相同的高分辨率。这种新颖的经过特殊设计的NFR光学器件的引入可以大大提高多层记录NFR中的数据容量。

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