We study arrays of plasmonic nanoparticles combined with quantum emitters, quantum plasmonic lattices, as a platform for room-temperature studies of quantum many-body physics. We outline a theory to describe surface plasmon-polariton distributions when they are coupled to externally pumped molecules. The possibility of tailoring the dispersion in plasmonic lattices allows realization of a variety of distributions, including the Bose-Einstein distribution as in photon condensation [Klaers et al., Nature (London) 468, 545 (2010)]. We show that the presence of losses can relax some of the standard dimensionality restrictions for condensation.Peer reviewe
Thesis (Ph.D.)--University of Washington, 2017-03Coherent and collective charge oscillations in meta...
We investigate an array of metal nanoparticles as a channel for nanophotonic quantum communication a...
Plasmonic structures are known to support the modes with sub-wavelength volumes in which the field/m...
We study arrays of plasmonic nanoparticles combined with quantum emitters, quantum plasmonic lattice...
| openaire: EC/H2020/745115/EU//OPLDBose–Einstein condensation is a remarkable manifestation of quan...
Polaritons are quasiparticles arising from the strong coupling of electromagnetic waves in cavities ...
Quantum plasmonics is an exciting subbranch of nanoplasmonics where the laws of quantum theory are u...
We present indications of thermalization and cooling of quasiparticles, a precursor for quantum cond...
A metallic nanoparticle array with a periodicity comparable to the single particle resonance can sho...
International audiencePlasmonic nanocavities enable the confinement of molecules and electromagnetic...
Quantum plasmonics is a rapidly growing field of research that involves the study of the quantum pro...
We present indications of thermalization and cooling of quasiparticles, a precursor for quantum cond...
Bosonic condensates offer exciting prospects for studies of non-equilibrium quantum dynamics. Unders...
In this thesis, we focus our attention on the excitation of Surface Plasmon Polaritons (SPPs) and th...
Thesis (Ph.D.)--University of Washington, 2017-03Coherent and collective charge oscillations in meta...
We investigate an array of metal nanoparticles as a channel for nanophotonic quantum communication a...
Plasmonic structures are known to support the modes with sub-wavelength volumes in which the field/m...
We study arrays of plasmonic nanoparticles combined with quantum emitters, quantum plasmonic lattice...
| openaire: EC/H2020/745115/EU//OPLDBose–Einstein condensation is a remarkable manifestation of quan...
Polaritons are quasiparticles arising from the strong coupling of electromagnetic waves in cavities ...
Quantum plasmonics is an exciting subbranch of nanoplasmonics where the laws of quantum theory are u...
We present indications of thermalization and cooling of quasiparticles, a precursor for quantum cond...
A metallic nanoparticle array with a periodicity comparable to the single particle resonance can sho...
International audiencePlasmonic nanocavities enable the confinement of molecules and electromagnetic...
Quantum plasmonics is a rapidly growing field of research that involves the study of the quantum pro...
We present indications of thermalization and cooling of quasiparticles, a precursor for quantum cond...
Bosonic condensates offer exciting prospects for studies of non-equilibrium quantum dynamics. Unders...
In this thesis, we focus our attention on the excitation of Surface Plasmon Polaritons (SPPs) and th...
Thesis (Ph.D.)--University of Washington, 2017-03Coherent and collective charge oscillations in meta...
We investigate an array of metal nanoparticles as a channel for nanophotonic quantum communication a...
Plasmonic structures are known to support the modes with sub-wavelength volumes in which the field/m...