Wen Jing, Xie Zhouyu, Liu Shiliang, Chen Xu, Tang Tianchen, Kanwal Saima, Zhang Dawei
Engineering Research Center of Optical Instrument and Systems, Ministry of Education and Shanghai Key Lab of Modern Optical System, University of Shanghai for Science and Technology, No. 516 Jun Gong Road, Shanghai 200093, China.
Shanghai Institute of Intelligent Science and Technology, Tongji University, Shanghai 200093, China.
Nanomaterials (Basel). 2023 Jan 27;13(3):508. doi: 10.3390/nano13030508.
Bessel beams are attaining keen interest in the current era considering their unique non-diffractive, self-healing nature and their diverse applications spanning over a broad spectral range of microwave to optical frequencies. However, conventional generators are not only bulky and complex but are also limited in terms of numerical aperture (NA) and efficiency. In this study, we experimentally develop a wavelength-independent Bessel beam generator through custom-designed metasurfaces to accomplish high resolution and large depth-of-focus imaging. These meta-axicons exhibit a high NA of up to 0.7 with an ability to generate Bessel beams with a full width at half maximum (FWHM) of 300 nm (λ/2) and a depth of focus (DOF) of 153 μm (261λ) in a broad spectral range of 500-700 nm. This excitation approach can provide a promising avenue for cutting-edge technology and applications related to Bessel beams for imaging along with a high axial resolution and an ultra-large depth of focus.
考虑到贝塞尔光束独特的非衍射、自愈合特性及其在从微波到光频的广泛光谱范围内的多样应用,它们在当今时代正引起人们的浓厚兴趣。然而,传统的发生器不仅体积庞大、结构复杂,而且在数值孔径(NA)和效率方面也受到限制。在本研究中,我们通过定制设计的超表面,实验性地开发了一种与波长无关的贝塞尔光束发生器,以实现高分辨率和大焦深成像。这些超轴棱锥展现出高达0.7的高数值孔径,能够在500 - 700 nm的宽光谱范围内生成半高宽(FWHM)为300 nm(λ/2)且焦深(DOF)为153 μm(261λ)的贝塞尔光束。这种激发方法可为与贝塞尔光束成像相关的前沿技术和应用提供一条有前景的途径,同时具备高轴向分辨率和超大焦深。