Phonon polaritons (PhPs) have attracted significant interest in the nano-optics communities because of their nanoscale confinement and long lifetimes. Although PhP modification by changing the local dielectric environment has been reported, controlled manipulation of PhPs by direct modification of the polaritonic material itself has remained elusive. Here, chemical switching of PhPs in α-MoO3 is achieved by engineering the α-MoO3 crystal through hydrogen intercalation. The intercalation process is non-volatile and recoverable, allowing reversible switching of PhPs while maintaining the long lifetimes. Precise control of the intercalation parameters enables analysis of the intermediate states, in which the needle-like hydrogenated nanostruct...
Photonic crystals (PCs) are periodically patterned dielectrics providing opportunities to shape and ...
Abstract Photonic crystals (PhCs) are a kind of artificial structures that can mold the flow of ligh...
Polaritons with directional in-plane propagation and ultralow losses in van der Waals (vdW) crystals...
Phonon polaritons (PhPs) have attracted significant interest in the nano-optics communities because ...
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 ...
Low-symmetry van der Waals materials have enabled strong confinement of mid-infrared light through h...
The exploitation of phonon-polaritons in nanostructured materials offers a pathway to manipulate inf...
Recent discoveries have shown that, when two layers of van der Waals (vdW) materials are superimpose...
Anisotropic hyperbolic phonon polaritons (PhPs) in natural biaxial hyperbolic material MoO$_3$ has o...
We propose an effective medium approach to tune and control surface phonon polariton dispersion rela...
The field of nanophotonics aims at understanding and harnessing light-matter interaction in structur...
Phonon polaritons (PhPs)—light coupled to lattice vibrations—with in-plane hyperbolic dispersion exh...
van der Waals nanomaterials supporting phonon polariton quasiparticles possess extraordinary light c...
Controlling the charge carrier density provides an efficient way to trigger phase transitions and mo...
Photonic crystals (PCs) are periodically patterned dielectrics providing opportunities to shape and ...
Abstract Photonic crystals (PhCs) are a kind of artificial structures that can mold the flow of ligh...
Polaritons with directional in-plane propagation and ultralow losses in van der Waals (vdW) crystals...
Phonon polaritons (PhPs) have attracted significant interest in the nano-optics communities because ...
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 ...
Low-symmetry van der Waals materials have enabled strong confinement of mid-infrared light through h...
The exploitation of phonon-polaritons in nanostructured materials offers a pathway to manipulate inf...
Recent discoveries have shown that, when two layers of van der Waals (vdW) materials are superimpose...
Anisotropic hyperbolic phonon polaritons (PhPs) in natural biaxial hyperbolic material MoO$_3$ has o...
We propose an effective medium approach to tune and control surface phonon polariton dispersion rela...
The field of nanophotonics aims at understanding and harnessing light-matter interaction in structur...
Phonon polaritons (PhPs)—light coupled to lattice vibrations—with in-plane hyperbolic dispersion exh...
van der Waals nanomaterials supporting phonon polariton quasiparticles possess extraordinary light c...
Controlling the charge carrier density provides an efficient way to trigger phase transitions and mo...
Photonic crystals (PCs) are periodically patterned dielectrics providing opportunities to shape and ...
Abstract Photonic crystals (PhCs) are a kind of artificial structures that can mold the flow of ligh...
Polaritons with directional in-plane propagation and ultralow losses in van der Waals (vdW) crystals...