Time-varying optical media, whose dielectric properties are actively modulated in time, introduce a host of novel effects in the classical propagation of light, and are of intense current interest. In the quantum domain, time-dependent media can be used to convert vacuum fluctuations (virtual photons) into pairs of real photons. We refer to these processes broadly as "dynamical vacuum effects" (DVEs). Despite interest for their potential applications as sources of quantum light, DVEs are generally very weak, presenting many opportunities for enhancement through modern techniques in nanophotonics, such as using media which support excitations such as plasmon and phonon polaritons. Here, we present a theory of weakly modulated DVEs in arbitra...
In this thesis we study quantum vacuum radiation. This is the radiation that is emitted due to chang...
Ultrafast nanophotonics is an emerging research field aimed at the development of nanodevices capabl...
Dipole-dipole interactions are ubiquitous fundamental physical phenomena that govern physical effect...
Recent progress in photonics has led to a renewed interest in time-varying media that change on time...
Vacuum fluctuations of the electromagnetic field are a direct manifestation of quantum effects. The ...
Temporal modulation of the quantum vacuum through fast motion of a neutral body or fast changes of i...
© 2019, The Author(s), under exclusive licence to Springer Nature Limited. The vanishingly small res...
The light-matter interaction can be utilized to qualitatively alter physical properties of materials...
The light-matter interaction can be utilized to qualitatively alter physical properties of materials...
We investigate the creation of entangled states of bright light beams obeying the condition of stron...
The dynamical Casimir effect (DCE) predicts the generation of photons from the vacuum due to the par...
The dynamical Casimir effect (DCE) predicts the generation of photons from the vacuum due to the par...
The equations that govern the temporal evolution of two photons in the Schr{\"o}dinger picture are d...
International audienceThe dynamical Casimir effect is the generation of pairs of real particles or p...
A model is presented of nth order nonlinear processes in whispering gallery mode resonators, with sc...
In this thesis we study quantum vacuum radiation. This is the radiation that is emitted due to chang...
Ultrafast nanophotonics is an emerging research field aimed at the development of nanodevices capabl...
Dipole-dipole interactions are ubiquitous fundamental physical phenomena that govern physical effect...
Recent progress in photonics has led to a renewed interest in time-varying media that change on time...
Vacuum fluctuations of the electromagnetic field are a direct manifestation of quantum effects. The ...
Temporal modulation of the quantum vacuum through fast motion of a neutral body or fast changes of i...
© 2019, The Author(s), under exclusive licence to Springer Nature Limited. The vanishingly small res...
The light-matter interaction can be utilized to qualitatively alter physical properties of materials...
The light-matter interaction can be utilized to qualitatively alter physical properties of materials...
We investigate the creation of entangled states of bright light beams obeying the condition of stron...
The dynamical Casimir effect (DCE) predicts the generation of photons from the vacuum due to the par...
The dynamical Casimir effect (DCE) predicts the generation of photons from the vacuum due to the par...
The equations that govern the temporal evolution of two photons in the Schr{\"o}dinger picture are d...
International audienceThe dynamical Casimir effect is the generation of pairs of real particles or p...
A model is presented of nth order nonlinear processes in whispering gallery mode resonators, with sc...
In this thesis we study quantum vacuum radiation. This is the radiation that is emitted due to chang...
Ultrafast nanophotonics is an emerging research field aimed at the development of nanodevices capabl...
Dipole-dipole interactions are ubiquitous fundamental physical phenomena that govern physical effect...