Tailoring light-matter interaction is essential to realize nanophotonic components. It can be achieved with surface phonon polaritons (SPhPs), an excitation of photons coupled with phonons of polar crystals, which also occur in 2d materials such as hexagonal boron nitride or anisotropic crystals. Ultra-confined resonances are observed by restricting the SPhPs to cavities. Phase-change materials (PCMs) enable non-volatile programming of these cavities based on a change in the refractive index. Recently, the new plasmonic PCM In$_3$SbTe$_2$ (IST) was introduced which can be reversibly switched from an amorphous dielectric state to a crystalline metallic one in the entire infrared to realize numerous nanoantenna geometries. However, reconfigur...
Excitons in lead bromide perovskites exhibit high binding energy and high oscillator strength, allow...
Launching and manipulation of polaritons in van der Waals materials offers novel opportunities for f...
Introducing porous material into optical cavities is a critical step toward the utilization of quant...
Phonon-polaritons offer an exciting avenue in nanophotonics. We comment on the novel nanofabrication...
Tailoring near-field optical phenomena often requires excitation of surface plasmon polaritons (SPPs...
Surface phonon polaritons (SPhP) and surface plasmon polaritons (SPP), evanescent modes supported by...
Cataloged from PDF version of article.In view of the progress on the confinement of light, we report...
Mid-infrared (MIR) photonics demands highly confined optical fields to obtain efficient interaction ...
Light manipulation at the nanoscale, which is known as nanophotonics, has attracted enormous attenti...
Photonic crystals (PCs) are periodically patterned dielectrics providing opportunities to shape and ...
Phase-change materials (PCMs) allow for non-volatile resonance tuning of nanophotonic components. Up...
Phonons, the quanta of vibrations, are very important for the equilibrium and dynamical properties o...
We demonstrate deep subwavelength confinement of surface phonon-polaritons in silicon carbide by cap...
Surface plasmon polaritons (SPPs), which are coupled excitations of electrons bound to a metal-diele...
This is the author accepted manuscript. The final version is available from American Chemical Socie...
Excitons in lead bromide perovskites exhibit high binding energy and high oscillator strength, allow...
Launching and manipulation of polaritons in van der Waals materials offers novel opportunities for f...
Introducing porous material into optical cavities is a critical step toward the utilization of quant...
Phonon-polaritons offer an exciting avenue in nanophotonics. We comment on the novel nanofabrication...
Tailoring near-field optical phenomena often requires excitation of surface plasmon polaritons (SPPs...
Surface phonon polaritons (SPhP) and surface plasmon polaritons (SPP), evanescent modes supported by...
Cataloged from PDF version of article.In view of the progress on the confinement of light, we report...
Mid-infrared (MIR) photonics demands highly confined optical fields to obtain efficient interaction ...
Light manipulation at the nanoscale, which is known as nanophotonics, has attracted enormous attenti...
Photonic crystals (PCs) are periodically patterned dielectrics providing opportunities to shape and ...
Phase-change materials (PCMs) allow for non-volatile resonance tuning of nanophotonic components. Up...
Phonons, the quanta of vibrations, are very important for the equilibrium and dynamical properties o...
We demonstrate deep subwavelength confinement of surface phonon-polaritons in silicon carbide by cap...
Surface plasmon polaritons (SPPs), which are coupled excitations of electrons bound to a metal-diele...
This is the author accepted manuscript. The final version is available from American Chemical Socie...
Excitons in lead bromide perovskites exhibit high binding energy and high oscillator strength, allow...
Launching and manipulation of polaritons in van der Waals materials offers novel opportunities for f...
Introducing porous material into optical cavities is a critical step toward the utilization of quant...