The quantization of the electromagnetic field in a three-dimensional inhomogeneous dielectric medium with losses is carried out in the framework of a damped-polariton model with an arbitrary spatial dependence of its parameters. The equations of motion for the canonical variables are solved explicitly by means of Laplace transformations for both positive and negative time. The dielectric susceptibility and the quantum noise-current density are identified in terms of the dynamical variables and parameters of the model. The operators that diagonalize the Hamiltonian are found as linear combinations of the canonical variables, with coefficients depending on the electric susceptibility and the dielectric Green function. The complete time depend...
The three dimensional formalism of the Green function method of the electro-magnetic field quantizat...
The electromagnetic field is canonically quantized in the presence of a linear, dispersive, and diss...
We investigate the quantisation in the Heisenberg representation of a model which represents a simpl...
The quantization of the electromagnetic field in a three-dimensional inhomogeneous dielectric medium...
The electromagnetic field is quantized in dielectric media that show both loss and dispersion. The c...
The electromagnetic field is quantized in dielectric media that show both loss and dispersion. The c...
The Hamiltonian of a polariton model for an inhomogeneous linear absorptive dielectric is diagonaliz...
We present a microscopic quantization scheme for the electromagnetic field in dispersive and lossy d...
There are several possible applications of quantum electrodynamics in dielectric media which requi...
There are several possible applications of quantum electrodynamics in dielectric media which requi...
There are several possible applications of quantum electrodynamics in dielectric media which requi...
There are several possible applications of quantum electrodynamics in dielectric media which requi...
There are several possible applications of quantum electrodynamics in dielectric media which requi...
A technique of canonical quantization in a general dispersive nonlinear dielectric medium is present...
The electromagnetic field is canonically quantized in the presence of a linear, dispersive, and diss...
The three dimensional formalism of the Green function method of the electro-magnetic field quantizat...
The electromagnetic field is canonically quantized in the presence of a linear, dispersive, and diss...
We investigate the quantisation in the Heisenberg representation of a model which represents a simpl...
The quantization of the electromagnetic field in a three-dimensional inhomogeneous dielectric medium...
The electromagnetic field is quantized in dielectric media that show both loss and dispersion. The c...
The electromagnetic field is quantized in dielectric media that show both loss and dispersion. The c...
The Hamiltonian of a polariton model for an inhomogeneous linear absorptive dielectric is diagonaliz...
We present a microscopic quantization scheme for the electromagnetic field in dispersive and lossy d...
There are several possible applications of quantum electrodynamics in dielectric media which requi...
There are several possible applications of quantum electrodynamics in dielectric media which requi...
There are several possible applications of quantum electrodynamics in dielectric media which requi...
There are several possible applications of quantum electrodynamics in dielectric media which requi...
There are several possible applications of quantum electrodynamics in dielectric media which requi...
A technique of canonical quantization in a general dispersive nonlinear dielectric medium is present...
The electromagnetic field is canonically quantized in the presence of a linear, dispersive, and diss...
The three dimensional formalism of the Green function method of the electro-magnetic field quantizat...
The electromagnetic field is canonically quantized in the presence of a linear, dispersive, and diss...
We investigate the quantisation in the Heisenberg representation of a model which represents a simpl...