English

Noise-Modified, Paraxial Maxwell-Bloch Equations for X-ray Amplified Spontaneous Emission

Atomic Physics 2023-05-09 v1 Accelerator Physics Optics

Abstract

We present a Hamiltonian-based, 3D theory in paraxial approximation for X-ray amplified spontaneous emission (or superfluorescence) pumped by X-ray free-electron laser. The seed field is included. The ensemble-averaged Heisenberg equations become Maxwell-Bloch equations if factorization of operator products is assumed and are adequate when the stimulated emission is dominant. The spontaneous emission is accounted for by adding a random noise term to the atomic coherence, the magnitude of which is uniquely determined from the fact that the expectation value of the normally-ordered product electric field operators associated with an atom does not factorize. The modified Maxwell-Bloch equation we developed reproduces the results of the previous 1D theory based on correlation functions.

Keywords

Cite

@article{arxiv.2305.04653,
  title  = {Noise-Modified, Paraxial Maxwell-Bloch Equations for X-ray Amplified Spontaneous Emission},
  author = {Jeong-Wan Park and Kwang-Je Kim and Ryan Lindberg},
  journal= {arXiv preprint arXiv:2305.04653},
  year   = {2023}
}