Localized surface phonon polaritons (LSPhPs) can be implemented to engineer light–matter interactions through nanoscale patterning for a range of midinfrared application spaces. However, the polar material systems studied to date have mainly focused on simple designs featuring a single element in the periodic unit cell. Increasing the complexity of the unit cell can serve to modify the resonant near-fields and intra- and inter-unit-cell coupling as well as to dictate spectral tuning in the far-field. In this work, we exploit more complicated unit-cell structures to realize LSPhP modes with additional degrees of design freedom, which are largely unexplored. Collectively excited LSPhP modes with distinctly symmetric and antisymmetric near-fie...
Phonon polaritons are quasiparticles comprising a photon and a coherently oscillating charge on a po...
Tailoring near-field optical phenomena often requires excitation of surface plasmon polaritons (SPPs...
Surface phonon polaritons (SPhPs) are hybrid light–matter states in which light strongly couples to ...
Low-loss surface phonon polariton (SPhP) modes supported within polar dielectric crystals are a prom...
Plasmonics provides great promise for nanophotonic applications. However, the high optical losses in...
Strongly coupled phonon polaritons in patterned polar dielectric nano-resonators give rise to the fo...
Following the recent observation of localized phonon polaritons in user-defined silicon carbide nano...
Infrared nanoimaging revealed extremely subwavelength sheet and edge surface phonon-polariton modes ...
Phonon polaritons, hybrid light-matter quasiparticles resulting from strong coupling of the electrom...
The strength of interaction between light and matter states is characterised by the Rabi frequency Ω...
Of late there has been a surge of interest in localized phonon polariton resonators which allow for ...
Photonic crystals (PCs) are periodically patterned dielectrics providing opportunities to shape and ...
The field of nanophotonics aims at understanding and harnessing light-matter interaction in structur...
We report on the strong enhancement of mid-infrared second-harmonic generation (SHG) from SiC nanopi...
Plasmonics on metal-dielectric interfaces was widely seen as the main route for miniaturization of c...
Phonon polaritons are quasiparticles comprising a photon and a coherently oscillating charge on a po...
Tailoring near-field optical phenomena often requires excitation of surface plasmon polaritons (SPPs...
Surface phonon polaritons (SPhPs) are hybrid light–matter states in which light strongly couples to ...
Low-loss surface phonon polariton (SPhP) modes supported within polar dielectric crystals are a prom...
Plasmonics provides great promise for nanophotonic applications. However, the high optical losses in...
Strongly coupled phonon polaritons in patterned polar dielectric nano-resonators give rise to the fo...
Following the recent observation of localized phonon polaritons in user-defined silicon carbide nano...
Infrared nanoimaging revealed extremely subwavelength sheet and edge surface phonon-polariton modes ...
Phonon polaritons, hybrid light-matter quasiparticles resulting from strong coupling of the electrom...
The strength of interaction between light and matter states is characterised by the Rabi frequency Ω...
Of late there has been a surge of interest in localized phonon polariton resonators which allow for ...
Photonic crystals (PCs) are periodically patterned dielectrics providing opportunities to shape and ...
The field of nanophotonics aims at understanding and harnessing light-matter interaction in structur...
We report on the strong enhancement of mid-infrared second-harmonic generation (SHG) from SiC nanopi...
Plasmonics on metal-dielectric interfaces was widely seen as the main route for miniaturization of c...
Phonon polaritons are quasiparticles comprising a photon and a coherently oscillating charge on a po...
Tailoring near-field optical phenomena often requires excitation of surface plasmon polaritons (SPPs...
Surface phonon polaritons (SPhPs) are hybrid light–matter states in which light strongly couples to ...