使用介电相位板的圆偏振光远场亚衍射聚焦和控制聚焦成形。

IF 1.4 3区 物理与天体物理 Q3 OPTICS
Bhavesh Pant, Brijesh Kumar Singh
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引用次数: 0

摘要

近年来,亚衍射聚焦由于其多功能性受到了广泛的关注。然而,在远场实现柔性亚衍射聚焦仍然是令人兴奋的。现有技术要么需要复杂的制造设备,要么局限于成像系统的短焦距和高数值孔径(NA)。本文介绍了一种利用大焦距透镜实现圆偏振光束远场亚衍射聚焦的优化方法。一种具有成本效益的介电相板可以满足这一目的。通过采用由介质s3n4薄层组成的相位板,在光束的横截面上调制传播光束的相位,该横截面被该相位板分成两个相反相位的区域。亚衍射聚焦实现了两个区域之间的适当调谐。除了亚衍射聚焦外,相位板还能够在远场将焦点塑造成甜甜圈形状和平顶轮廓。该设计为亚衍射聚焦和聚焦整形提供了一种简单的解决方案,将在光学成像、光学捕获和材料加工中找到潜在的应用。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Far-field sub-diffraction focusing and controlled focus shaping of circularly polarized light using a dielectric phase plate.

In recent years, sub-diffraction focusing has received substantial attention due to its versatility. However, achieving a flexible sub-diffraction focusing in the far field remains stimulating. Existing techniques either require complex fabrication facilities or are limited to the short focal length and high numerical aperture (NA) of the imaging system. Here, we introduce an optimization method for sub-diffraction focusing of a circularly polarized beam in the far field with a lens of large focal length. A cost-effective dielectric phase plate serves the purpose. By employing a phase plate composed of a thin layer of dielectric S i 3 N 4, the phase of the propagating beam is modulated in the beam's cross-section, which is divided into two regions of the opposite phase by the plate. A sub-diffraction focusing is achieved for a proper tunning between the two regions. In addition to sub-diffraction focusing, the phase plate is also capable of shaping the focus into a doughnut-shaped and a flat-top profile in the far field. This design provides a simple solution for sub-diffraction focusing and focus shaping that will find potential applications in optical imaging, optical trapping, and material processing.

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来源期刊
CiteScore
3.40
自引率
10.50%
发文量
417
审稿时长
3 months
期刊介绍: The Journal of the Optical Society of America A (JOSA A) is devoted to developments in any field of classical optics, image science, and vision. JOSA A includes original peer-reviewed papers on such topics as: * Atmospheric optics * Clinical vision * Coherence and Statistical Optics * Color * Diffraction and gratings * Image processing * Machine vision * Physiological optics * Polarization * Scattering * Signal processing * Thin films * Visual optics Also: j opt soc am a.
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