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通过对飞秒激光束进行空间整形以实现高纵横比微孔钻孔来产生非衍射长度、可调谐的类贝塞尔光束。

Non-diffraction-length, tunable, Bessel-like beams generation by spatially shaping a femtosecond laser beam for high-aspect-ratio micro-hole drilling.

作者信息

Yao Zhulin, Jiang Lan, Li Xiaowei, Wang Andong, Wang Zhi, Li Ming, Lu Yongfeng

出版信息

Opt Express. 2018 Aug 20;26(17):21960-21968. doi: 10.1364/OE.26.021960.

Abstract

Bessel beams are advantageous in high aspect-ratio microhole drilling because of their immunity to diffraction. However, conventional methods of generating Bessel beams result in poor adjustability of the nondiffraction length. In this study, we theoretically describe and experimentally demonstrate the generation of Bessel-like beams (BLBs) with an adjustable nondiffraction length by using a phase-only spatial light modulator. In this method, nondiffraction lengths varying from 10 to 35 mm can be achieved by changing the designed phase profile (curvature). High-quality, high aspect ratio (560:1) and length-adjustable microholes can be drilled by spatially shaping a femtosecond laser beam.

摘要

贝塞尔光束由于其抗衍射特性,在高深径比微孔钻削中具有优势。然而,传统的产生贝塞尔光束的方法导致非衍射长度的可调性较差。在本研究中,我们从理论上描述并通过实验证明了利用纯相位空间光调制器产生具有可调非衍射长度的类贝塞尔光束(BLB)。在该方法中,通过改变设计的相位分布(曲率),可以实现10至35毫米范围内变化的非衍射长度。通过对飞秒激光束进行空间整形,可以钻出高质量、高深径比(560:1)且长度可调的微孔。

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