AbstractA quantitative understanding of the electromagnetic response of materials is essential for the precise engineering of maximal, versatile, and controllable light–matter interactions. Material surfaces, in particular, are prominent platforms for enhancing electromagnetic interactions and for tailoring chemical processes. However, at the deep nanoscale, the electromagnetic response of electron systems is significantly impacted by quantum surface-response at material interfaces, which is challenging to probe using standard optical techniques. Here, we show how ultraconfined acoustic graphene plasmons in graphene–dielectric–metal structures can be used to probe the quantum surface-response functions of nearby metals, here encoded through...
Excitation of localized surface plasmon resonances in metal nanoparticles and nanoparticle assemblie...
Plasmons produce large confinement and enhancement of light that enable applications as varied as ca...
Quantum plasmonics is a rapidly growing field of research that involves the study of the quantum pro...
A quantitative understanding of the electromagnetic response of materials is essential for the preci...
A quantitative understanding of the electromagnetic response of materials is essential for the preci...
Although plasmon modes exist in doped graphene, the limited range of doping achieved by gating restr...
Copyright of 2019 Optical Society of AmericaRecent advances in nanofabrication technology now enable...
The observation and electrical manipulation of infrared surface plasmons in graphene have triggered ...
When a graphene sheet is placed near a metal surface, it supports a special type of highly confined ...
Graphene plasmons are emerging as an alternative solution to noble metal plasmons, adding the advant...
Graphene plasmons are emerging as an alternative solution to noble metal plasmons, adding the advant...
An acoustic plasmon mode in a graphene-dielectric-metal structure has recently been spotlighted as a...
Resumen del trabajo presentado al XXV International Summer School "Nicolás Cabrera": Manipulating li...
13 pags, 10 figs© 2013 Science Wise Publishing. Plasmons produce large confinement and enhancement o...
Plasmons, collective electron density oscillations, provide physicists with intriguing challenges an...
Excitation of localized surface plasmon resonances in metal nanoparticles and nanoparticle assemblie...
Plasmons produce large confinement and enhancement of light that enable applications as varied as ca...
Quantum plasmonics is a rapidly growing field of research that involves the study of the quantum pro...
A quantitative understanding of the electromagnetic response of materials is essential for the preci...
A quantitative understanding of the electromagnetic response of materials is essential for the preci...
Although plasmon modes exist in doped graphene, the limited range of doping achieved by gating restr...
Copyright of 2019 Optical Society of AmericaRecent advances in nanofabrication technology now enable...
The observation and electrical manipulation of infrared surface plasmons in graphene have triggered ...
When a graphene sheet is placed near a metal surface, it supports a special type of highly confined ...
Graphene plasmons are emerging as an alternative solution to noble metal plasmons, adding the advant...
Graphene plasmons are emerging as an alternative solution to noble metal plasmons, adding the advant...
An acoustic plasmon mode in a graphene-dielectric-metal structure has recently been spotlighted as a...
Resumen del trabajo presentado al XXV International Summer School "Nicolás Cabrera": Manipulating li...
13 pags, 10 figs© 2013 Science Wise Publishing. Plasmons produce large confinement and enhancement o...
Plasmons, collective electron density oscillations, provide physicists with intriguing challenges an...
Excitation of localized surface plasmon resonances in metal nanoparticles and nanoparticle assemblie...
Plasmons produce large confinement and enhancement of light that enable applications as varied as ca...
Quantum plasmonics is a rapidly growing field of research that involves the study of the quantum pro...