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Far-field optical imaging with subdiffraction resolution enabled by nonlinear saturation absorption

机译:非线性饱和吸收可实现具有亚衍射分辨率的远场光学成像

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摘要

The resolution of far-field optical imaging is required to improve beyond the Abbe limit to the subdiffraction or even the nanoscale. In this work, inspired by scanning electronic microscopy (SEM) imaging, in which carbon (or Au) thin films are usually required to be coated on the sample surface before imaging to remove the charging effect while imaging by electrons. We propose a saturation-absorption-induced far-field super-resolution optical imaging method (SAI-SRIM). In the SAI-SRIM, the carbon (or Au) layers in SEM imaging are replaced by nonlinear-saturation-absorption (NSA) thin films, which are directly coated onto the sample surfaces using advanced thin film deposition techniques. The surface fluctuant morphologies are replicated to the NSA thin films, accordingly. The coated sample surfaces are then imaged using conventional laser scanning microscopy. Consequently, the imaging resolution is greatly improved, and subdiffraction-resolved optical images are obtained theoretically and experimentally. The SAI-SRIM provides an effective and easy way to achieve far-field super-resolution optical imaging for sample surfaces with geometric fluctuant morphology characteristics.
机译:需要远场光学成像的分辨率提高到亚衍射甚至纳米级的阿贝极限。在这项工作中,受到扫描电子显微镜(SEM)成像的启发,在该成像中,通常需要在成像之前将碳(或Au)薄膜涂在样品表面上,以消除通过电子成像时的电荷效应。我们提出了一种饱和吸收诱导的远场超分辨率光学成像方法(SAI-SRIM)。在SAI-SRIM中,SEM成像中的碳(或Au)层被非线性饱和吸收(NSA)薄膜代替,该薄膜使用先进的薄膜沉积技术直接涂覆在样品表面上。因此,表面起伏形态被复制到NSA薄膜上。然后使用常规的激光扫描显微镜对涂覆的样品表面进行成像。因此,成像分辨率大大提高,并且在理论上和实验上都获得了亚衍射分辨的光学图像。 SAI-SRIM提供了一种有效且简便的方法,可对具有几何波动形态特征的样品表面实现远场超分辨率光学成像。

著录项

  • 期刊名称 Scientific Reports
  • 作者

    Chenliang Ding; Jingsong Wei;

  • 作者单位
  • 年(卷),期 -1(6),-1
  • 年度 -1
  • 页码 18845
  • 总页数 8
  • 原文格式 PDF
  • 正文语种
  • 中图分类
  • 关键词

  • 入库时间 2022-08-21 10:57:00

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