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[HTML][HTML] Perturbative light–matter interactions; from first principles to inverse design
Our experience of the world around us is governed almost entirely by light–matter
interactions. At the most fundamental level, such interactions are described by quantum …
interactions. At the most fundamental level, such interactions are described by quantum …
Open quantum systems with local and collective incoherent processes: Efficient numerical simulations using permutational invariance
The permutational invariance of identical two-level systems allows for an exponential
reduction in the computational resources required to study the Lindblad dynamics of …
reduction in the computational resources required to study the Lindblad dynamics of …
Cavity Casimir-Polder forces and their effects in ground-state chemical reactivity
Here, we present a fundamental study on how the ground-state chemical reactivity of a
single molecule can be modified in a QED scenario, ie, when it is placed inside a nanoscale …
single molecule can be modified in a QED scenario, ie, when it is placed inside a nanoscale …
Non-Markovian collective emission from macroscopically separated emitters
We study the collective radiative decay of a system of two two-level emitters coupled to a
one-dimensional waveguide in a regime where their separation is comparable to the …
one-dimensional waveguide in a regime where their separation is comparable to the …
Critical review of quantum plasmonic models for finite-size media
We provide a critical analysis of some of the commonly used theoretical models to describe
quantum plasmons in finite size media. We summarize the standard approach based on a …
quantum plasmons in finite size media. We summarize the standard approach based on a …
Collective radiation from distant emitters
Waveguides allow for direct coupling of emitters separated by large distances, offering a
path to connect remote quantum systems. However, when facing the distances needed for …
path to connect remote quantum systems. However, when facing the distances needed for …
Modified dipole-dipole interaction and dissipation in an atomic ensemble near surfaces
We study how the radiative properties of a dense ensemble of atoms can be modified when
they are placed near or between metallic or dielectric surfaces. If the average separation …
they are placed near or between metallic or dielectric surfaces. If the average separation …
Cooperative atomic emission from a line of atoms interacting with a resonant plane surface
Cooperative effects such as super-and subradiance can be observed in the fluorescence
emitted by a system of N atoms in vacuum after interaction with a laser beam. In the vicinity …
emitted by a system of N atoms in vacuum after interaction with a laser beam. In the vicinity …
Steady-State Entanglement Generation via Casimir-Polder Interactions
We investigate the generation of steady-state entanglement between two atoms resulting
from the fluctuation-mediated Casimir-Polder (CP) interactions near a surface. Starting with …
from the fluctuation-mediated Casimir-Polder (CP) interactions near a surface. Starting with …
Interaction of atomic systems with quantum vacuum beyond electric dipole approximation
The photonic environment can significantly influence emission properties and interactions
among atomic systems. In such scenarios, frequently the electric dipole approximation is …
among atomic systems. In such scenarios, frequently the electric dipole approximation is …