Partially coherent light beam shaping via complex spatial coherence structure engineering

The techniques of optical beam shaping have enabled progress in a broad range of interdisciplinary science and engineering, owing to the unique properties and promising applications of their created structured light. However, the conventional methods, which are based on fully coherent optics approac...

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Published inAdvances in physics: X Vol. 7; no. 1
Main Authors Chen, Yahong, Wang, Fei, Cai, Yangjian
Format Journal Article
LanguageEnglish
Published Abingdon Taylor & Francis 01.01.2022
Taylor & Francis Ltd
Taylor & Francis Group
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Summary:The techniques of optical beam shaping have enabled progress in a broad range of interdisciplinary science and engineering, owing to the unique properties and promising applications of their created structured light. However, the conventional methods, which are based on fully coherent optics approaches, introduce several adverse effects such as speckles noise in the generated beams and susceptible to be disturbed in complex environment (e.g. turbulent atmospheres), because of the sensitive coherent light-matter interaction. To overcome those side effects, a new protocol relied on the partially coherent beam shaping has been developed. By elaborately tailoring the complex spatial coherence structure of a partially coherent beam, the desired beam profile and trajectory with high beam quality and robust propagation feature in complex environment can be generated. In this review, we present an overview of such unconventional partially coherent beam shaping with a focus on the important role of the complex spatial coherence structure engineering. Partially coherent beam shaping not only provides an efficient means for resisting the disadvantages in coherent optics methods but also enables new applications in novel optical imaging and tweezers.
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ISSN:2374-6149
2374-6149
DOI:10.1080/23746149.2021.2009742