轴棱锥
贝塞尔光束
光学
贝塞尔函数
栅栏
衍射
梁(结构)
空间光调制器
光束直径
半最大全宽
分束器
激光束质量
材料科学
光圈(计算机存储器)
衍射光栅
物理
激光器
激光束
声学
作者
Chenyang Wu,Xuan-Lun Huang,Yipeng Ji,Jiaxing Wang,Connie J. Chang-Hasnain
出处
期刊:Applied Optics
[The Optical Society]
日期:2024-02-23
卷期号:63 (9): 2234-2234
被引量:1
摘要
Bessel beam arrays are highly attractive due to non-diffraction properties, parallel processing, and large capacity capabilities. However, conventional approaches of generating Bessel beams, such as spatial light modulators, axicons, and diffraction optical elements, suffer from various limitations of system complexity and bulkiness, low uniformity, and limited numerical aperture (NA). The limited NA imposes constraints on achieving minimal full width at half maximum (FWHM) of the Bessel beam, ultimately compromising the resolution of the beam. In this study, we demonstrate a method for generating Bessel beam arrays with regular and random patterns via an ultra-compact metasurface. This approach integrates the phase profile of an optimized beam splitter with a meta-axicon. The Bessel beam arrays exhibit subwavelength dimensions of FWHM (590 nm, ∼0.9 λ ) and relatively high uniformity of 90% for NA=0.2 and 69% for NA=0.4. Furthermore, the method achieves effective suppression of background noise and zeroth-order intensity compared to methods based on Dammann grating (DG) based metasurfaces. The proposed method highlights potential applications of Bessel beam arrays in various fields, such as laser machining, optical communication, and biomedical imaging.
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