Abstract
Black phosphorus presents a very anisotropic crystal structure, making it a potential candidate for hyperbolic plasmonics, characterized by a permittivity tensor where one of the principal components is metallic and the other dielectric. Here we demonstrate that atomically thin black phosphorus can be engineered to be a hyperbolic material operating in a broad range of the electromagnetic spectrum from the entire visible spectrum to ultraviolet. With the introduction of an optical gain, a new hyperbolic region emerges in the infrared. The character of this hyperbolic plasmon depends on the interplay between gain and loss along the two crystalline directions.
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CITATION STYLE
Van Veen, E., Nemilentsau, A., Kumar, A., Roldán, R., Katsnelson, M. I., Low, T., & Yuan, S. (2019). Tuning Two-Dimensional Hyperbolic Plasmons in Black Phosphorus. Physical Review Applied, 12(1). https://doi.org/10.1103/PhysRevApplied.12.014011
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