Investigation of spontaneous decay of an excited atom in dusty unmagnetized plasma is presented in this paper. The transverse contribution to the decay rate is normally associated with spontaneous emission. The rate of spontaneous emission can be obtained by Fermi’s golden rule. In this calculation, the transverse contribution to dielectric permittivity and Green function technique are used. Calculation of the decay rate of atoms is applicable to understand the particular structure of the vacuum state of the electromagnetic field
We study spontaneous radiative decay of translational levels of an atom in the vicinity of a semi-in...
By using the vector potential operator commutation relations, for a molecule (or generally an emitte...
A structured environment such as a photonic crystal can strongly affect radiative properties of an a...
Abstract: Spontaneous emission and Lamb shift of atoms in absorbing dielectrics are discussed. A Gre...
The spontaneous emission of an atom is not a property of the atom only; it also depends on the local...
We report on theoretical studies of the inhibition of the spontaneous emission process in subwavelen...
Starting from the quantized version of Maxwell's equations for the electromagnetic field in an arbit...
Modifications in the spontaneous emission rate of an excited atom that are caused by extinction effe...
The emission properties of atoms lie at the foundations of both quantum theory and light-matter inte...
After giving a summary of the basic-theoretical concept of quantization of the electromagnetic eld ...
Spontaneous radiation by atoms in the presence of the planar dielectric-vacuum interface, planar die...
A formalism for studying spontaneous decay of an excited two-level atom in the presence of dispersin...
PACS. 32.70Cs { Oscillator strengths, lifetimes, transition moments. PACS. 32.80Pj { Optical cooling...
A general theory of spontaneous emission was developed in Papers I and II of this series. In the pre...
The effect of dissipation of dense plasmas on spontaneous radiation of ionized atom is investigated ...
We study spontaneous radiative decay of translational levels of an atom in the vicinity of a semi-in...
By using the vector potential operator commutation relations, for a molecule (or generally an emitte...
A structured environment such as a photonic crystal can strongly affect radiative properties of an a...
Abstract: Spontaneous emission and Lamb shift of atoms in absorbing dielectrics are discussed. A Gre...
The spontaneous emission of an atom is not a property of the atom only; it also depends on the local...
We report on theoretical studies of the inhibition of the spontaneous emission process in subwavelen...
Starting from the quantized version of Maxwell's equations for the electromagnetic field in an arbit...
Modifications in the spontaneous emission rate of an excited atom that are caused by extinction effe...
The emission properties of atoms lie at the foundations of both quantum theory and light-matter inte...
After giving a summary of the basic-theoretical concept of quantization of the electromagnetic eld ...
Spontaneous radiation by atoms in the presence of the planar dielectric-vacuum interface, planar die...
A formalism for studying spontaneous decay of an excited two-level atom in the presence of dispersin...
PACS. 32.70Cs { Oscillator strengths, lifetimes, transition moments. PACS. 32.80Pj { Optical cooling...
A general theory of spontaneous emission was developed in Papers I and II of this series. In the pre...
The effect of dissipation of dense plasmas on spontaneous radiation of ionized atom is investigated ...
We study spontaneous radiative decay of translational levels of an atom in the vicinity of a semi-in...
By using the vector potential operator commutation relations, for a molecule (or generally an emitte...
A structured environment such as a photonic crystal can strongly affect radiative properties of an a...