Manipulating hyperbolic transient plasmons in a layered semiconductor

Author:

Fu Rao,Qu YusongORCID,Xue MengfeiORCID,Liu Xinghui,Chen ShengyaoORCID,Zhao Yongqian,Chen Runkun,Li Boxuan,Weng HongmingORCID,Liu QianORCID,Dai QingORCID,Chen JianingORCID

Abstract

AbstractAnisotropic materials with oppositely signed dielectric tensors support hyperbolic polaritons, displaying enhanced electromagnetic localization and directional energy flow. However, the most reported hyperbolic phonon polaritons are difficult to apply for active electro-optical modulations and optoelectronic devices. Here, we report a dynamic topological plasmonic dispersion transition in black phosphorus via photo-induced carrier injection, i.e., transforming the iso-frequency contour from a pristine ellipsoid to a non-equilibrium hyperboloid. Our work also demonstrates the peculiar transient plasmonic properties of the studied layered semiconductor, such as the ultrafast transition, low propagation losses, efficient optical emission from the black phosphorus’s edges, and the characterization of different transient plasmon modes. Our results may be relevant for the development of future optoelectronic applications.

Publisher

Springer Science and Business Media LLC

Subject

General Physics and Astronomy,General Biochemistry, Genetics and Molecular Biology,General Chemistry,Multidisciplinary

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