Nonlinear Nanophotonic Chip-space Interfaces: On-chip Generation of Structured, Topological and Spatiotemporal Lights Via Nonlinear Čerenkov Radiation

Fuente: arXiv
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Main Authors: Wei, Dunzhao, Chen, Bo, Wan, Shuai, Wang, Yixuan, Ma, Jiantao, Wang, Pi-Yu, Chang, Chun, Qiu, Guixin, Tan, Zelin, Huang, Xiaoshan, Chen, Yan, Jiang, Tian, Zhan, Qiwen, Bo, Fang, Fu, Songnian, Wang, Xuehua, Dong, Chun-hua, Liu, Jin
Format: Preprint
Published: 2026
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author Wei, Dunzhao
Chen, Bo
Wan, Shuai
Wang, Yixuan
Ma, Jiantao
Wang, Pi-Yu
Chang, Chun
Qiu, Guixin
Tan, Zelin
Huang, Xiaoshan
Chen, Yan
Jiang, Tian
Zhan, Qiwen
Bo, Fang
Fu, Songnian
Wang, Xuehua
Dong, Chun-hua
Liu, Jin
author_facet Wei, Dunzhao
Chen, Bo
Wan, Shuai
Wang, Yixuan
Ma, Jiantao
Wang, Pi-Yu
Chang, Chun
Qiu, Guixin
Tan, Zelin
Huang, Xiaoshan
Chen, Yan
Jiang, Tian
Zhan, Qiwen
Bo, Fang
Fu, Songnian
Wang, Xuehua
Dong, Chun-hua
Liu, Jin
contents Miniaturized and reconfigurable interfaces between confined optical modes within integrated photonic chips and structured light propagating in free space would serve as a cornerstone for fundamental optical science and modern photonic technology. In this work, we exploit the anisotropic nonlinear susceptibility tensors associated with thin-film lithium niobate to construct nanophotonic chip-space interfaces capable of flexibly generating and multi-dimensionally engineering structured light via injections of photons to on-chip waveguides. By harnessing the nonlinear Čerenkov radiation in integrated nonlinear microring resonators, we successfully tailor the spatial profile, polarization state, emission wavelength, topological charge and temporal wave packet of structured optical vortices, exhibiting reconfigurabilities and tuning ranges far beyond the state-of-the-art. To further showcase the capabilities of our platform, we use a single pump to generate tunable optical skyrmions via the spin-orbit coupling and multi-state integrated vortex microcombs in the visible range via synergistic $χ^{(2)}$ and $χ^{(3)}$ nonlinear optical processes. Our work bridges the research fields of structured light and integrated nonlinear optics, providing unprecedented opportunities for spatiotemporal light generation and on-chip multidimensional nonlinear optics.
format Preprint
id arxiv_https___arxiv_org_abs_2603_06360
institution arXiv
publishDate 2026
record_format arxiv
spellingShingle Nonlinear Nanophotonic Chip-space Interfaces: On-chip Generation of Structured, Topological and Spatiotemporal Lights Via Nonlinear Čerenkov Radiation
Wei, Dunzhao
Chen, Bo
Wan, Shuai
Wang, Yixuan
Ma, Jiantao
Wang, Pi-Yu
Chang, Chun
Qiu, Guixin
Tan, Zelin
Huang, Xiaoshan
Chen, Yan
Jiang, Tian
Zhan, Qiwen
Bo, Fang
Fu, Songnian
Wang, Xuehua
Dong, Chun-hua
Liu, Jin
Optics
Miniaturized and reconfigurable interfaces between confined optical modes within integrated photonic chips and structured light propagating in free space would serve as a cornerstone for fundamental optical science and modern photonic technology. In this work, we exploit the anisotropic nonlinear susceptibility tensors associated with thin-film lithium niobate to construct nanophotonic chip-space interfaces capable of flexibly generating and multi-dimensionally engineering structured light via injections of photons to on-chip waveguides. By harnessing the nonlinear Čerenkov radiation in integrated nonlinear microring resonators, we successfully tailor the spatial profile, polarization state, emission wavelength, topological charge and temporal wave packet of structured optical vortices, exhibiting reconfigurabilities and tuning ranges far beyond the state-of-the-art. To further showcase the capabilities of our platform, we use a single pump to generate tunable optical skyrmions via the spin-orbit coupling and multi-state integrated vortex microcombs in the visible range via synergistic $χ^{(2)}$ and $χ^{(3)}$ nonlinear optical processes. Our work bridges the research fields of structured light and integrated nonlinear optics, providing unprecedented opportunities for spatiotemporal light generation and on-chip multidimensional nonlinear optics.
title Nonlinear Nanophotonic Chip-space Interfaces: On-chip Generation of Structured, Topological and Spatiotemporal Lights Via Nonlinear Čerenkov Radiation
topic Optics
url https://arxiv.org/abs/2603.06360