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Flexible rotation of transverse optical field for 2D self-accelerating beams with a designated trajectory

Lei Zhu et al · Editorial Office of Opto-Electronic Journals Group, Institute of Optics and Electronics, CAS, China · 2021

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Self-accelerating beams have the unusual ability to remain diffraction-free while undergo the transverse shift during the free-space propagation. We theoretically identify that the transverse optical field distribution of 2D self-accelerating beam is determined by the selection of the transverse Cartesian coordinates, when the caustic method is utilized for its trajectory design. Based on the coordinate-rotation method, we experimentally demonstrate a scheme to flexibly manipulate the rotation of transverse optical field for 2D self-accelerating beams under the condition of a designated trajectory. With this scheme, the transverse optical field can be rotated within a range of 90 degrees, especially when the trajectory of 2D self-accelerating beams needs to be maintained for free-space photonic interconnection.

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APA 7

al, L. Z. E. (2021). Flexible rotation of transverse optical field for 2D self-accelerating beams with a designated trajectory. https://doi.org/10.29026/oea.2021.200021

MLA

al, Lei Zhu et. "Flexible rotation of transverse optical field for 2D self-accelerating beams with a designated trajectory." 2021. https://doi.org/10.29026/oea.2021.200021.

Chicago

al, Lei Zhu et. 2021. "Flexible rotation of transverse optical field for 2D self-accelerating beams with a designated trajectory.". https://doi.org/10.29026/oea.2021.200021.

Harvard

al, L. Z. E. 2021, Flexible rotation of transverse optical field for 2D self-accelerating beams with a designated trajectory, Editorial Office of Opto-Electronic Journals Group, Institute of Optics and Electronics, CAS, China, available at: https://doi.org/10.29026/oea.2021.200021 [Accessed 7 Aug. 2026].

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Title
Flexible rotation of transverse optical field for 2D self-accelerating beams with a designated trajectory
Author / contributors
Lei Zhu et al
Publisher
Editorial Office of Opto-Electronic Journals Group, Institute of Optics and Electronics, CAS, China
Publication year
2021
ISSN
2096-4579
ISSN
2096-4579
Language
English

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