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[HTML][HTML] Quantum amplification and simulation of strong and ultrastrong coupling of light and matter
The interaction of light and matter at the single-photon level is of central importance in
various fields of physics, including, eg, condensed matter physics, astronomy, quantum …
various fields of physics, including, eg, condensed matter physics, astronomy, quantum …
Extreme nanophotonics from ultrathin metallic gaps
Ultrathin dielectric gaps between metals can trap plasmonic optical modes with surprisingly
low loss and with volumes below 1 nm3. We review the origin and subtle properties of these …
low loss and with volumes below 1 nm3. We review the origin and subtle properties of these …
High‐Q plasmonic resonances: fundamentals and applications
Subwavelength confinement of light with plasmonics is promising for nanophotonics and
optoelectronics. However, it is nontrivial to obtain narrow plasmonic resonances due to the …
optoelectronics. However, it is nontrivial to obtain narrow plasmonic resonances due to the …
Highly confined tunable mid-infrared plasmonics in graphene nanoresonators
Single-layer graphene has been shown to have intriguing prospects as a plasmonic
material, as modes having plasmon wavelengths∼ 20 times smaller than free space (λp∼ …
material, as modes having plasmon wavelengths∼ 20 times smaller than free space (λp∼ …
Significantly enhanced coupling effect and gap plasmon resonance in a MIM-cavity based sensing structure
Herein, we design a high sensitivity with a multi-mode plasmonic sensor based on the
square ring-shaped resonators containing silver nanorods together with a metal–insulator …
square ring-shaped resonators containing silver nanorods together with a metal–insulator …
Rare-earth ion doped TeO2 and GeO2 glasses as laser materials
Germanium oxide (GeO2) and tellurium oxide (TeO2) based glasses are classed as the
heavy metal oxide glasses, with phonon energies ranging between 740cm− 1 and 880cm …
heavy metal oxide glasses, with phonon energies ranging between 740cm− 1 and 880cm …
Full color generation using silver tandem nanodisks
Plasmonic effects associated with metallic nanostructures have been widely studied for color
generation. It became apparent that highly saturated and bright colors are hard to obtain …
generation. It became apparent that highly saturated and bright colors are hard to obtain …
Low-loss, extreme subdiffraction photon confinement via silicon carbide localized surface phonon polariton resonators
Plasmonics provides great promise for nanophotonic applications. However, the high optical
losses inherent in metal-based plasmonic systems have limited progress. Thus, it is critical …
losses inherent in metal-based plasmonic systems have limited progress. Thus, it is critical …
Full-color subwavelength printing with gap-plasmonic optical antennas
Metallic nanostructures can be designed to effectively reflect different colors at deep-
subwavelength scales. Such color manipulation is attractive for applications such as …
subwavelength scales. Such color manipulation is attractive for applications such as …
Chirality transfer from sub‐nanometer biochemical molecules to sub‐micrometer plasmonic metastructures: physiochemical mechanisms, biosensing, and bioimaging …
Determining the structural chirality of biomolecules is of vital importance in bioscience and
biomedicine. Conventional methods for characterizing molecular chirality, eg, circular …
biomedicine. Conventional methods for characterizing molecular chirality, eg, circular …