Topological polar microdomains enabling dynamic light field manipulation
ORAL
Abstract
Topological polar textures in ferroelectric oxides exhibit diverse spatial dipole-moment configurations, ideal for innovative spatial light field manipulation through effective light-matter interactions. However, conventional topological polar textures are typically on the nanometer scale, making them unsuitable for spatial light field manipulation of laser beams. Here, we report the design of topological domains on the micrometer scale using freestanding BaTiO3 membranes and demonstrate their feasibility in spatial light field modulation. By introducing dome-shaped microstructures in BaTiO3 membranes, we create a radial flexoelectric field through lattice distortion, which in turn induces center-convergent topological microdomains. The interplay between the topological dipole distributions and light promotes the conversion of circularly polarized waves into vortex light fields via nonlinear spin-to-orbit angular momentum conversion. Further dynamic manipulation of vortex light fields is also achieved by thermally and electrically switching the polar topology. Our work highlights the vast potential of abundant topological polar textures in advanced light field modulation, with promising applications in highly integrated photonic circuits and reconfigurable high-capacity optical communications.
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Publication: Sun, H. Y., et al. Topological polar microdomains enabling dynamic light field manipulation. To be submitted.
Presenters
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Haoying Sun
Nanjing Univ
Authors
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Haoying Sun
Nanjing Univ
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Pengcheng Chen
Nanjing Univ
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Wei Mao
Nanjing Univ
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Changqing Guo
Beijing Institute of Technology
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Yueying Li
Nanjing University, Nanjing Univ
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Jierong Wang
Stanford University, Nanjing Univ
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Wenjie Sun
Nanjing Univ
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Duo Xu
Nanjing Univ
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Bo Hao
Nanjing Univ
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Tingjun Zhang
Nanjing Univ
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Jianan Ma
Nanjing Univ
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Jiangfeng Yang
Nanjing Univ
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Zhequan Cao
Nanjing Univ
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Zhengbin Gu
Nanjing University, Nanjing Univ
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Houbing Huang
Beijing Institute of Technology
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Peng Wang
University of Warwick
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Yong Zhang
Nanjing Univ
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Di Wu
Nanjing University, Nanjing Univ
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Yuefeng Nie
Nanjing Univ