2022
DOI: 10.1515/nanoph-2022-0034
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Gate tunable light–matter interaction in natural biaxial hyperbolic van der Waals heterostructures

Abstract: The recent discovery of natural biaxial hyperbolicity in van der Waals crystals, such as α-MoO3, has opened up new avenues for mid-IR nanophotonics due to their deep subwavelength phonon polaritons. However, a significant challenge is the lack of active tunability of these hyperbolic phonon polaritons. In this work, we investigate heterostructures of graphene and α-MoO3 for actively tunable hybrid plasmon phonon polariton modes via electrostatic gating in the mid-infrared spectral region. We observe a unique p… Show more

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Cited by 29 publications
(24 citation statements)
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“…Final note: the authors became aware of the following relevant works by Álvarez-Pérez et al 32 ; Bapat et al 33 ; Hu et al 34 ; and Zeng et al 35 after completion of this work.…”
Section: Resultsmentioning
confidence: 96%
“…Final note: the authors became aware of the following relevant works by Álvarez-Pérez et al 32 ; Bapat et al 33 ; Hu et al 34 ; and Zeng et al 35 after completion of this work.…”
Section: Resultsmentioning
confidence: 96%
“…Remarkably, this kind of multiple meta-boundaries can support the emergence of excitonic superfluid phase . Moreover, the out-of-plane interaction between neighboring meta-boundaries would become more complex, if there exists the interlayer twist angle, as schematically shown in Figure e. For example, Figure f shows the multiple meta-boundaries composed of rotated multiple bilayer graphene .…”
Section: Multiple Meta-boundariesmentioning
confidence: 98%
“…In 2022, A. Bapat et al proposed to measure the valley quantum interference via placing a gapped Dirac system at a certain distance away from the heterostructure consisting of monolayer graphene and hyperbolic crystals of α-MoO 3 on a silicon substrate. 45 The geometrical configuration for the heterostructure is sketched in Fig. 13(a).…”
Section: Applications Of 2d Natural Hmsmentioning
confidence: 99%
“…[31][32][33][34][35][36][37][38][39] Especially, natural HMs are endowed with many fantastic merits in comparison with traditional hyperbolic metamaterials. [40][41][42][43][44][45] For instance, they require no artificial structuring and contain no internal interfaces for the electrons to scatter off. Moreover, because of their homogeneous nature, the hyperbolic dispersion, which is in principle only limited by the atomic periodicity of the crystal lattice or effects of a non-local dielectric response, is expected to extend much further in the reciprocal space.…”
Section: Introductionmentioning
confidence: 99%
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