The properties of an electron in an atom or molecule are not fixed; rather they are a function of the optical environment of the emitter. Not only is the spontaneous emission a function of the optical environment, but also the underlying wave functions and energy levels, which are modified by the potential induced by quantum fluctuations of the electromagnetic field. In free space, this modification of atomic levels and wave functions is very weak and generally hard to observe due to the prevalence of other perturbations like fine structure. Here, we explore the possibility of highly tailorable electronic structure by exploiting large Lamb shifts in tunable electromagnetic environments such as graphene, whose optical properties are dynamica...
The physics of quantum materials is at the heart of current condensed matter research. The interacti...
Current atom chips, conventionally made from metal wires, suffer from anumber of different problems,...
Graphene supports surface plasmons bound to an atomically thin layer of carbon, characterized by tun...
Combining the quantum optical properties of single-photon emitters with the strong near-field intera...
The fluctuations of the electromagnetic vacuum are one of the most powerful manifestations of the qu...
13 pags, 10 figs© 2013 Science Wise Publishing. Plasmons produce large confinement and enhancement o...
Although plasmon modes exist in doped graphene, the limited range of doping achieved by gating restr...
The ability to tailor the properties of electronic devices is one of the landmark achievements of mo...
We report active electrical tuning of plasmon resonance of silver nanoprisms (Ag NPs) in the visible...
Thesis: S.B., Massachusetts Institute of Technology, Department of Physics, 2016.Cataloged from PDF ...
Surface plasmons supported by metallic nanostructures interact strongly with light and confine it in...
Among the many extraordinary properties of graphene, its optical response allows one to easily tune ...
The photonic environment can significantly influence emission properties and interactions among atom...
Graphene has drawn extraordinary interest from both scientists and the wider public; the idea of an ...
Free-electron-based light sources have long attracted interest due to their continuous tunability th...
The physics of quantum materials is at the heart of current condensed matter research. The interacti...
Current atom chips, conventionally made from metal wires, suffer from anumber of different problems,...
Graphene supports surface plasmons bound to an atomically thin layer of carbon, characterized by tun...
Combining the quantum optical properties of single-photon emitters with the strong near-field intera...
The fluctuations of the electromagnetic vacuum are one of the most powerful manifestations of the qu...
13 pags, 10 figs© 2013 Science Wise Publishing. Plasmons produce large confinement and enhancement o...
Although plasmon modes exist in doped graphene, the limited range of doping achieved by gating restr...
The ability to tailor the properties of electronic devices is one of the landmark achievements of mo...
We report active electrical tuning of plasmon resonance of silver nanoprisms (Ag NPs) in the visible...
Thesis: S.B., Massachusetts Institute of Technology, Department of Physics, 2016.Cataloged from PDF ...
Surface plasmons supported by metallic nanostructures interact strongly with light and confine it in...
Among the many extraordinary properties of graphene, its optical response allows one to easily tune ...
The photonic environment can significantly influence emission properties and interactions among atom...
Graphene has drawn extraordinary interest from both scientists and the wider public; the idea of an ...
Free-electron-based light sources have long attracted interest due to their continuous tunability th...
The physics of quantum materials is at the heart of current condensed matter research. The interacti...
Current atom chips, conventionally made from metal wires, suffer from anumber of different problems,...
Graphene supports surface plasmons bound to an atomically thin layer of carbon, characterized by tun...