The spontaneous emission of an excited atom is analyzed by quantum stochastic trajectory approach without both rotating-wave approximation and Markovian approximation. The atom finite size effect is also taken into account. We show by an example that the correction due to the counter-rotating wave term is rather small, even for the largest atomic number of real nuclei
We study large fluctuations of emitted radiation in the system of N non-interacting two-level atoms....
Abstract. We study quantum non-Markovianity in the early stage of the emission process of a two-leve...
In a previous investigation, a general theory for spontaneous emission from a system of N identical ...
The non-Markovian correlation spectra of spontaneous emission of an excited two-level atom are deriv...
The derivation of non-Markovian correlation spectra of spontaneous emission of an excited two-level ...
Spontaneous emission from two systems, namely, N identical harmonic oscillators and N identical two-...
In this paper we consider the effects of spontaneous emission on the problem of atomic reflection fr...
In this paper we consider the effects of spontaneous emission on the problem of atomic reflection fr...
A general theory of spontaneous emission was developed in Papers I and II of this series. In the pre...
Quantum feedback can stabilize a two-level atom against decoherence (spontaneous emission), putting ...
We study collective spontaneous emission from a linear array of N two-state atoms using quantum traj...
This is an addendum to the author's previous paper Phys. Rev. A 4 1778 (1971), where master equation...
We study quantum non-Markovianity in the early stage of the emission process of a two-level atom cou...
We study quantum non-Markovianity in the early stage of the emission process of a two-level atom cou...
We outline the solution of a fundamental problem in quantum theory which has hitherto lacked a prope...
We study large fluctuations of emitted radiation in the system of N non-interacting two-level atoms....
Abstract. We study quantum non-Markovianity in the early stage of the emission process of a two-leve...
In a previous investigation, a general theory for spontaneous emission from a system of N identical ...
The non-Markovian correlation spectra of spontaneous emission of an excited two-level atom are deriv...
The derivation of non-Markovian correlation spectra of spontaneous emission of an excited two-level ...
Spontaneous emission from two systems, namely, N identical harmonic oscillators and N identical two-...
In this paper we consider the effects of spontaneous emission on the problem of atomic reflection fr...
In this paper we consider the effects of spontaneous emission on the problem of atomic reflection fr...
A general theory of spontaneous emission was developed in Papers I and II of this series. In the pre...
Quantum feedback can stabilize a two-level atom against decoherence (spontaneous emission), putting ...
We study collective spontaneous emission from a linear array of N two-state atoms using quantum traj...
This is an addendum to the author's previous paper Phys. Rev. A 4 1778 (1971), where master equation...
We study quantum non-Markovianity in the early stage of the emission process of a two-level atom cou...
We study quantum non-Markovianity in the early stage of the emission process of a two-level atom cou...
We outline the solution of a fundamental problem in quantum theory which has hitherto lacked a prope...
We study large fluctuations of emitted radiation in the system of N non-interacting two-level atoms....
Abstract. We study quantum non-Markovianity in the early stage of the emission process of a two-leve...
In a previous investigation, a general theory for spontaneous emission from a system of N identical ...