We present a Hamiltonian for electrodynamics in lossy, dispersive, magneto-electric media, and diagonalize its canonical quantum counterpart. Our results provide a rigorous framework for classical and quantum optics in negative-index materials.2 page(s
The quantization of the electromagnetic field in a three-dimensional inhomogeneous dielectric medium...
The microscopic basis of the linear dispersion in any physical model of a linear waveguide in one or...
The authors examine spatio-temporal descriptions of the electro-magnetic field in linear and nonline...
We present a canonical quantization of macroscopic electrodynamics. The results apply to inhomogeneo...
We present a canonical quantization of macroscopic electrodynamics. The results apply to inhomogeneo...
Application of the standard canonical quantization rules of quantum field theory to macroscopic elec...
The electromagnetic field is canonically quantized in the presence of a linear, dispersive, and diss...
We extend previous work on macroscopic canonical quantization leading to a multipolar Hamiltonian ap...
We present a math-physics modeling approach called canonical quantization with numerical mode decomp...
We find the action that describes the electromagnetic field in a spatially dispersive, homogeneous m...
Recent work by Philbin [New J. Phys. 12, 123008 (2010)] has provided a Lagrangian theory that establ...
A bi-anisotropic magnetodielectric medium is modeled by two independent set of three dimensional har...
General linear electrodynamics allow for an arbitrary linear constitutive relation between the field...
In this thesis the quantum theory of light in absorbing media, macroscopic quantum electrodynamics, ...
International audienceThe quantization of plasmons has been analyzed mostly under the assumption of ...
The quantization of the electromagnetic field in a three-dimensional inhomogeneous dielectric medium...
The microscopic basis of the linear dispersion in any physical model of a linear waveguide in one or...
The authors examine spatio-temporal descriptions of the electro-magnetic field in linear and nonline...
We present a canonical quantization of macroscopic electrodynamics. The results apply to inhomogeneo...
We present a canonical quantization of macroscopic electrodynamics. The results apply to inhomogeneo...
Application of the standard canonical quantization rules of quantum field theory to macroscopic elec...
The electromagnetic field is canonically quantized in the presence of a linear, dispersive, and diss...
We extend previous work on macroscopic canonical quantization leading to a multipolar Hamiltonian ap...
We present a math-physics modeling approach called canonical quantization with numerical mode decomp...
We find the action that describes the electromagnetic field in a spatially dispersive, homogeneous m...
Recent work by Philbin [New J. Phys. 12, 123008 (2010)] has provided a Lagrangian theory that establ...
A bi-anisotropic magnetodielectric medium is modeled by two independent set of three dimensional har...
General linear electrodynamics allow for an arbitrary linear constitutive relation between the field...
In this thesis the quantum theory of light in absorbing media, macroscopic quantum electrodynamics, ...
International audienceThe quantization of plasmons has been analyzed mostly under the assumption of ...
The quantization of the electromagnetic field in a three-dimensional inhomogeneous dielectric medium...
The microscopic basis of the linear dispersion in any physical model of a linear waveguide in one or...
The authors examine spatio-temporal descriptions of the electro-magnetic field in linear and nonline...