The recent ability of plasmonic nanostructures to probe subnanometer and even atomic scales demands theories that can account for the nonlocal dynamics of the electron gas. The hydrodynamic Drude model (HDM) captures much of the microscopic dynamics of the quantum mechanical effects when additional boundary conditions are considered. Here, we revisit the HDM under the Madelung formalism to reexpress its coupled system of equations as a single nonlinear Schrödinger equation in order to have a natural quantum mechanical description of plasmonics. Specifically, we study the response of two overlapping nanowires with this formalism. We ensure that an proposed frame concurs with classical electrodynamics when the local response approximation hol...
The description of optical properties of subnanometer junctions is particularly challenging. Purely ...
Using the hydrodynamic model in the electrostatic approximation, we describe the formation of graph...
This manuscript is mainly focused on the influence of repulsion between free electrons on the optica...
Current multiscale plasmonic systems pose a modeling challenge. Classical macroscopic theories fail ...
Using a fully quantum mechanical approach we study the optical response of a strongly coupled metall...
In dieser Arbeit werden die nichtlokalen sowie nichtlinearen Eigenschaften plasmonischer Nanopartike...
Since deep nanoscale systems are increasingly studied, accurate macroscopic theories dealing with qu...
As characteristic lengths in plasmonics rapidly approach the sub-nanometer regime, quantum-informed ...
The electromagnetic properties of plasmonic nano-Antennas and scatterers with the characteristic dim...
We present the optical response of two interacting metallic nanowires calculated for separation dist...
The standard hydrodynamic Drude model with hard-wall boundary conditions can give accurate quantitat...
The interaction between the electromagnetic field and plasmonic nanostructures leads to both the str...
The classical treatment of plasmonics is insufficient at the nanometer-scale due to quantum mechanic...
Plasmonic response of the metallic structure characterized by sub-nanometer dielectric gaps can be s...
We analyze the stability of a linearized hydrodynamical model describing the response of nanometric ...
The description of optical properties of subnanometer junctions is particularly challenging. Purely ...
Using the hydrodynamic model in the electrostatic approximation, we describe the formation of graph...
This manuscript is mainly focused on the influence of repulsion between free electrons on the optica...
Current multiscale plasmonic systems pose a modeling challenge. Classical macroscopic theories fail ...
Using a fully quantum mechanical approach we study the optical response of a strongly coupled metall...
In dieser Arbeit werden die nichtlokalen sowie nichtlinearen Eigenschaften plasmonischer Nanopartike...
Since deep nanoscale systems are increasingly studied, accurate macroscopic theories dealing with qu...
As characteristic lengths in plasmonics rapidly approach the sub-nanometer regime, quantum-informed ...
The electromagnetic properties of plasmonic nano-Antennas and scatterers with the characteristic dim...
We present the optical response of two interacting metallic nanowires calculated for separation dist...
The standard hydrodynamic Drude model with hard-wall boundary conditions can give accurate quantitat...
The interaction between the electromagnetic field and plasmonic nanostructures leads to both the str...
The classical treatment of plasmonics is insufficient at the nanometer-scale due to quantum mechanic...
Plasmonic response of the metallic structure characterized by sub-nanometer dielectric gaps can be s...
We analyze the stability of a linearized hydrodynamical model describing the response of nanometric ...
The description of optical properties of subnanometer junctions is particularly challenging. Purely ...
Using the hydrodynamic model in the electrostatic approximation, we describe the formation of graph...
This manuscript is mainly focused on the influence of repulsion between free electrons on the optica...