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OAM mode conversion in a photonic chip

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? 2021 Elsevier B.V.As an additional degree of freedom and emerging resource, orbital angular momentum (OAM) has been widely used in both classical and quantum information technologies. Flexible manipulation of OAM modes is fundamentally important to various OAM-based applications. In this Letter, we demonstrate OAM mode conversion in a photonic chip by properly engineering the three-dimensional laser direct writing. More specifically, we find that by increasing the direct-written power, the input OAM±1 modes first remains unchanged, and then transforms into its superpositions. When mapping OAM±2 into the waveguide, it gradually evolves from OAM±1 and its superpositions to OAM±2. This mode conversion is essentially determined by the eigenmodes supported by the waveguide. Furthermore, the input OAM±1 modes can be reversed by tuning the direct-written velocity. Our results demonstrate the more complete manipulation of twisted-light-inside a photonic chip and may further contribute to the integration of high-dimensional quantum information processing.

3D waveguide structureMode conversionOrbital angular momentum (OAM)

Shen W.-G.、Wang H.-M.、Jin X.-M.、Chen Y.

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Center for Integrated Quantum Information Technologies (IQIT) School of Physics and Astronomy and State Key Laboratory of Advanced Optical Communication Systems and Networks Shanghai Jiao Tong University

Shenzhen Institute for Quantum Science and Engineering Southern University of Science and Technology

2022

Optics Communications

Optics Communications

EISCI
ISSN:0030-4018
年,卷(期):2022.507
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