In this paper the physical entities such as transition probabilities and the density of states are related to appropriate electromagnetic-field correlation functions and to appropriate response functions. Such response functions have already been computed in a previous paper and therefore these can be used to obtain surface-dependent corrections. It is shown how the density of states and hence Planck's law depends on the presence of surfaces. I explicitly calculate the correction terms for the case of a small blackbody bounded by two plane conducting surfaces. An appreciable correction occurs if the linear dimensions of the blackbody are of the order of a wavelength. Next electric-dipole-type transitions in atomic systems are considered and...
The interaction of matter with radiation concerns almost every area in physics. The exposure of matt...
Using the Green function approach to the problem of quantization of the phenomenological Maxwell the...
International audienceWe use time-dependent density functional theory (TDDFT) within the jellium mod...
A form of quantum electrodynamics is developed which allows us to treat a number of problems involvi...
A form of quantum electrodynamics is developed which allows us to treat a number of problems involvi...
A quantum-electrodynamic theory of spontaneous emission in presence of dielectrics and conductors is...
Dynamical laws describing the space-time development of the response functions and second-order corr...
The different kinds of response functions introduced in a previous paper are used to calculate the d...
The different kinds of response functions introduced in a previous paper are used to calculate the d...
In order to investigate the effect of a medium with dissipation and dispersion and also the curvatur...
A quantum-theoretic treatment of Lippmann fringes is given using the response-function formalism of ...
The problem of the interaction between a two-level atom and a quantum electromagnetic field is treat...
The interaction of matter with radiation concerns almost every area in physics. The exposure of matt...
We discuss the formulation of quantized macroscopic electrodynamics interacting with Dirac particles...
The interaction of matter with radiation concerns almost every area in physics. The exposure of matt...
The interaction of matter with radiation concerns almost every area in physics. The exposure of matt...
Using the Green function approach to the problem of quantization of the phenomenological Maxwell the...
International audienceWe use time-dependent density functional theory (TDDFT) within the jellium mod...
A form of quantum electrodynamics is developed which allows us to treat a number of problems involvi...
A form of quantum electrodynamics is developed which allows us to treat a number of problems involvi...
A quantum-electrodynamic theory of spontaneous emission in presence of dielectrics and conductors is...
Dynamical laws describing the space-time development of the response functions and second-order corr...
The different kinds of response functions introduced in a previous paper are used to calculate the d...
The different kinds of response functions introduced in a previous paper are used to calculate the d...
In order to investigate the effect of a medium with dissipation and dispersion and also the curvatur...
A quantum-theoretic treatment of Lippmann fringes is given using the response-function formalism of ...
The problem of the interaction between a two-level atom and a quantum electromagnetic field is treat...
The interaction of matter with radiation concerns almost every area in physics. The exposure of matt...
We discuss the formulation of quantized macroscopic electrodynamics interacting with Dirac particles...
The interaction of matter with radiation concerns almost every area in physics. The exposure of matt...
The interaction of matter with radiation concerns almost every area in physics. The exposure of matt...
Using the Green function approach to the problem of quantization of the phenomenological Maxwell the...
International audienceWe use time-dependent density functional theory (TDDFT) within the jellium mod...