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Mapping propagation of collective modes in Bi2Se3 and Bi2Te2.2Se0.8 topological insulators by near-field terahertz nanoscopy

Academic Article
Publication Date:
2021
abstract:
Near-field microscopy discloses a peculiar potential to explore novel quantum state of matter at the nanoscale, providing an intriguing playground to investigate, locally, carrier dynamics or propagation of photoexcited modes as plasmons, phonons, plasmon-polaritons or phonon-polaritons. Here, we exploit a combination of hyperspectral time domain spectroscopy nano-imaging and detectorless scattering near-field optical microscopy, at multiple terahertz frequencies, to explore the rich physics of layered topological insulators as Bi2Se3 and Bi2Te2.2Se0.8, hyperbolic materials with topologically protected surface states. By mapping the near-field scattering signal from a set of thin flakes of Bi2Se3 and Bi2Te2.2Se0.8 of various thicknesses, we shed light on the nature of the collective modes dominating their optical response in the 2-3 THz range. We capture snapshots of the activation of transverse and longitudinal optical phonons and reveal the propagation of sub-diffractional hyperbolic phonon-polariton modes influenced by the Dirac plasmons arising from the topological surface states and of bulk plasmons, prospecting new research directions in plasmonics, tailored nanophotonics, spintronics and quantum technologies.
Iris type:
01.01 Articolo in rivista
Keywords:
PLASMON POLARITONS; SINGLE-CRYSTALS; SURFACE-STATE; BISMUTH; FILMS
List of contributors:
Vitiello, MIRIAM SERENA; Viti, Leonardo; Pogna, EVA ARIANNA AURELIA
Authors of the University:
POGNA EVA ARIANNA AURELIA
VITI LEONARDO
VITIELLO MIRIAM SERENA
Handle:
https://iris.cnr.it/handle/20.500.14243/441873
Published in:
NATURE COMMUNICATIONS
Journal
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URL

https://www.nature.com/articles/s41467-021-26831-6
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