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Topological polarization singular lasing with highly efficient radiation channel.


ABSTRACT: Bound states in the continuum (BICs) in photonic crystals describe the originally leaky Bloch modes that can become bounded when their radiation fields carry topological polarization singularities. However, topological polarization singularities do not carry energy to far field, which limits radiation efficiencies of BICs for light emitting applications. Here, we demonstrate a topological polarization singular laser which has a topological polarization singular channel in the second Brillouin zone and a paired linearly polarized radiation channel in the first Brillouin zone. The presence of the singular channel enables the lasing mode with a higher quality factor than other modes for single mode lasing. In the meanwhile, the presence of the radiation channel secures the lasing mode with high radiation efficiency. The demonstrated topological polarization singular laser operates at room temperature with an external quantum efficiency exceeding 24%. Our work presents a new paradigm in eigenmode engineering for mode selection, exotic field manipulation and lasing.

SUBMITTER: Sang YG 

PROVIDER: S-EPMC9617866 | biostudies-literature | 2022 Oct

REPOSITORIES: biostudies-literature

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Topological polarization singular lasing with highly efficient radiation channel.

Sang Yun-Gang YG   Lu Jing-Yu JY   Ouyang Yun-Hao YH   Luan Hong-Yi HY   Wu Jia-Hao JH   Li Jia-Yong JY   Ma Ren-Min RM  

Nature communications 20221030 1


Bound states in the continuum (BICs) in photonic crystals describe the originally leaky Bloch modes that can become bounded when their radiation fields carry topological polarization singularities. However, topological polarization singularities do not carry energy to far field, which limits radiation efficiencies of BICs for light emitting applications. Here, we demonstrate a topological polarization singular laser which has a topological polarization singular channel in the second Brillouin zo  ...[more]

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