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. This phenomenon results from symmetry breaking of momentum matching in polaritonic diffraction in vdW materials. We show that the propagation of PhPs can be versatile and robustly tailored via structural engineering, while PhPs in low-symmetry (e.g., monoclinic and triclinic) crystals are largely restricted by their naturally occurring permittivities. Our work synergizes grating diffraction phenomena with the extreme anisotropy of high-symmetry vdW materials, enabling unexpected control of infrared polaritons along different pathways and opening opportunities for applications ranging from on-chip photonics to directional heat dissipation.
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Qing Zhang
Zhejiang Normal University
Qingdong Ou
Fujian Medical University
Guangyuan Si
Jilin University
Science Advances
National University of Singapore
Monash University
City University of New York
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Zhang et al. (Fri,) studied this question.
synapsesocial.com/papers/69fd1949ea4a61241c5d0c0d — DOI: https://doi.org/10.1126/sciadv.abn9774
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