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Terahertz Twistoptics-Engineering Canalized Phonon Polaritons

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Obst, Maximilian ; Noerenberg, Tobias ; Alvarez-Perez, Gonzalo ; de Oliveira, Thales V. A. G. ; Taboada-Gutierrez, Javier ; Feres, Flavio H. ; Kaps, Felix G. ; Hatem, Osama ; Luferau, Andrei ; Nikitin, Alexey Y. ; Klopf, J. Michael ; Alonso-Gonzalez, Pablo ; Kehr, Susanne C. ; Eng, Lukas M.
Número total de Autores: 14
Tipo de documento: Artigo Científico
Fonte: ACS NANO; v. 17, n. 19, p. 10-pg., 2023-09-22.
Resumo

The terahertz (THz) frequency range is key to studying collective excitations in many crystals and organic molecules. However, due to the large wavelength of THz radiation, the local probing of these excitations in smaller crystalline structures or few-molecule arrangements requires sophisticated methods to confine THz light down to the nanometer length scale, as well as to manipulate such a confined radiation. For this purpose, in recent years, taking advantage of hyperbolic phonon polaritons (HPhPs) in highly anisotropic van der Waals (vdW) materials has emerged as a promising approach, offering a multitude of manipulation options, such as control over the wavefront shape and propagation direction. Here, we demonstrate the THz application of twist-angle-induced HPhP manipulation, designing the propagation of confined THz radiation between 8.39 and 8.98 THz in the vdW material alpha-molybdenum trioxide (alpha-MoO3), hence extending twistoptics to this intriguing frequency range. Our images, recorded by near-field optical microscopy, show the frequency- and twist-angle-dependent changes between hyperbolic and elliptic polariton propagation, revealing a polaritonic transition at THz frequencies. As a result, we are able to allocate canalization (highly collimated propagation) of confined THz radiation by carefully adjusting these two parameters, i.e. frequency and twist angle. Specifically, we report polariton canalization in alpha-MoO3 at 8.67 THz for a twist angle of 50 degrees. Our results demonstrate the precise control and manipulation of confined collective excitations at THz frequencies, particularly offering possibilities for nanophotonic applications. (AU)

Processo FAPESP: 19/14017-9 - De ondas de éxcitons a THz-fônons: a nano-óptica de materiais 2Ds via nanoespectroscopia de infravermelho síncrotron
Beneficiário:Raul de Oliveira Freitas
Modalidade de apoio: Auxílio à Pesquisa - Jovens Pesquisadores
Processo FAPESP: 22/02901-4 - Nano-óptica de poláritons em cristais bidimensionais e na interface metal/dielétrico no infravermelho médio-distante
Beneficiário:Francisco Carlos Barbosa Maia
Modalidade de apoio: Auxílio à Pesquisa - Projeto Inicial