轴棱锥
贝塞尔光束
光学
贝塞尔函数
物理
梁(结构)
镜头(地质)
瓶子
二进制数
光学镊子
衍射
空间光调制器
激光器
横截面
超短脉冲
扩束器
航程(航空)
分束器
准直光
光子学
谐波
激光束
光束
结构光
材料科学
折射
作者
Andra Naresh Kumar Reddy,Srinivasa Rao Allam,Ashish Tiwari,Vishwa Pal,Tina M. Hayward,Rajesh Menon,Takashige Omatsu
出处
期刊:ACS Photonics
[American Chemical Society]
日期:2026-02-18
卷期号:13 (5): 1354-1367
标识
DOI:10.1021/acsphotonics.5c02547
摘要
We introduce a novel method for generating a high-quality, sharply defined, nondiffracting optical bottle beam by focusing a Bessel beam propagating through a flat multilevel diffractive lens (MDL). This study highlights the impact of the MDL illuminated by a Bessel beam with suppressed sidelobes generated from a binary axicon. The resulting Bessel bottle beam exhibits a series of low- or zero-intensity zones interleaved with high-intensity regions, with periods ranging from 0.2 to 1.36 mm along the beam propagation direction. The transverse intensity profiles of these regions remain shape-invariant over long distances in free space, and thereby, the nondiffracting range of the micron-sized optical bottle beam exceeds 5 cm. We also observe that the far-field output from the MDL, when illuminated by a Bessel beam, offers advantages over that of conventional focusing lenses. Furthermore, this technique can operate on ultrafast time scales (from pico- to femtoseconds) due to the high damage thresholds of the binary axicon and MDL, enabling the generation of high-power optical bottle beams. Ultimately, our experimental approach paves the way for various applications, including high-resolution biological imaging in turbid media, particle manipulation, micromachining, and harmonic generation, by leveraging the spatial landscape of the optical bottle beam.
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