Merging the properties of VO2 and van der Waals (vdW) materials has given rise to novel tunable photonic devices. Despite recent studies on the effect of the phase change of VO2 on tuning near-field optical response of phonon polaritons in the infrared range, active tuning of optical phonons (OPhs) using far-field techniques has been scarce. Here, we investigate the tunability of OPhs of α-MoO3 in a multilayer structure with VO2. Our experiments show the frequency and intensity tuning of 2 cm–1 and 11% for OPhs in the [100] direction and 2 cm–1 and 28% for OPhs in the [010] crystal direction of α-MoO3. Using the effective medium theory and dielectric models of each layer, we verify these findings with simulations. We then use loss tangent a...
Abstract Phonon polaritons are promising for infrared applications due to a strong light-matter coup...
We show a new path to endow the optical response of resonant gratings with tunability. Modulation of...
Charge carriers in semiconducting transition metal dichalcogenides possess a valley degree of freedo...
We propose an effective medium approach to tune and control surface phonon polariton dispersion rela...
α-MoO3, a natural van der Waals (vdWs) material, has received wide attention in nano-optics for supp...
This article belongs to the Special Issue 2D Materials and Their Heterostructures and Superlattices....
Low-symmetry van der Waals materials have enabled strong confinement of mid-infrared light through h...
Anisotropic hyperbolic phonon polaritons (PhPs) in natural biaxial hyperbolic material MoO$_3$ has o...
van der Waals nanomaterials supporting phonon polariton quasiparticles possess extraordinary light c...
The exploitation of phonon-polaritons in nanostructured materials offers a pathway to manipulate inf...
Abstract Polar van der Waals (vdW) crystals that support phonon polaritons have recently attracted m...
Phonon polaritons (PhPs) have attracted significant interest in the nano-optics communities because ...
Phonon polaritons—light coupled to lattice vibrations—in polar van der Waals crystals are promising ...
The biaxial van der Waals semiconductor α‐phase molybdenum trioxide (α‐MoO3) has recently received s...
Unlike conventional plasmonic media, polaritonic van der Waals (vdW) materials hold promise for acti...
Abstract Phonon polaritons are promising for infrared applications due to a strong light-matter coup...
We show a new path to endow the optical response of resonant gratings with tunability. Modulation of...
Charge carriers in semiconducting transition metal dichalcogenides possess a valley degree of freedo...
We propose an effective medium approach to tune and control surface phonon polariton dispersion rela...
α-MoO3, a natural van der Waals (vdWs) material, has received wide attention in nano-optics for supp...
This article belongs to the Special Issue 2D Materials and Their Heterostructures and Superlattices....
Low-symmetry van der Waals materials have enabled strong confinement of mid-infrared light through h...
Anisotropic hyperbolic phonon polaritons (PhPs) in natural biaxial hyperbolic material MoO$_3$ has o...
van der Waals nanomaterials supporting phonon polariton quasiparticles possess extraordinary light c...
The exploitation of phonon-polaritons in nanostructured materials offers a pathway to manipulate inf...
Abstract Polar van der Waals (vdW) crystals that support phonon polaritons have recently attracted m...
Phonon polaritons (PhPs) have attracted significant interest in the nano-optics communities because ...
Phonon polaritons—light coupled to lattice vibrations—in polar van der Waals crystals are promising ...
The biaxial van der Waals semiconductor α‐phase molybdenum trioxide (α‐MoO3) has recently received s...
Unlike conventional plasmonic media, polaritonic van der Waals (vdW) materials hold promise for acti...
Abstract Phonon polaritons are promising for infrared applications due to a strong light-matter coup...
We show a new path to endow the optical response of resonant gratings with tunability. Modulation of...
Charge carriers in semiconducting transition metal dichalcogenides possess a valley degree of freedo...