Tailoring nondiffracting fields with a non-Markovian phase imprint

We experimentally generate nondiffracting speckles that carry non-Markovian properties by encoding the wavefront of a monochromatic laser beam with ring-shaped non-Markovian phases. The resulting non-Markovian nondiffracting fields present a ring-shaped pattern and central dark notches, which are an...

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Veröffentlicht in:Optics letters 2024-04, Vol.49 (8), p.2165-2168
Hauptverfasser: Jing, Zhuhe, Zhang, Jingjing, Chen, Huaijian, Huang, Dandan, Zhang, Pei, Gao, Hong, Li, Fuli, Liu, Ruifeng
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Sprache:eng
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Zusammenfassung:We experimentally generate nondiffracting speckles that carry non-Markovian properties by encoding the wavefront of a monochromatic laser beam with ring-shaped non-Markovian phases. The resulting non-Markovian nondiffracting fields present a ring-shaped pattern and central dark notches, which are analyzed with an expression of the orbital angular momentum spectra of the wavefront possessing ring-shaped non-Markovian phases. Furthermore, we demonstrate that the intensity profiles of these non-Markovian nondiffracting fields exhibit stability over multiple Rayleigh ranges, and their statistical properties could be controlled with the non-Markovianity of the input phase masks. This work presents an approach for simultaneously tailoring the diffracting property and non-Markovianity of optical fields and provides a deeper understanding of non-Markovian processes.
ISSN:0146-9592
1539-4794
DOI:10.1364/OL.519524