English

Tracer particles coupled to an interacting boson gas

Mathematical Physics 2021-08-18 v2 Analysis of PDEs math.MP

Abstract

In this work, we investigate the mean-field limit of a model consisting in m1m \geq 1 tracer particles, coupled to an interacting boson field. We assume the mass of the tracer particles and the expected number of bosons to be of the same order of magnitude N1N \geq 1 and we investigate the NN\rightarrow \infty limit. In particular, we show that the limiting system can be effectively described by a pair of variables (Xt,φt)R3m×H1(R3)( \textbf{X}_t ,\varphi_t ) \in \mathbb{R}^{3m} \times H^1(\mathbb{R}^3) that solve a mean-field equation. Our methods are based on proving estimates for the number of bosonic particles in a suitable \textit{fluctuation state} ΩN,t\Omega_{N,t }. The main diffculty of the problem comes from the fact that the interaction with the tracer particles can create or destroy bosons for states close to the vacuum.

Keywords

Cite

@article{arxiv.2107.05195,
  title  = {Tracer particles coupled to an interacting boson gas},
  author = {Esteban Cárdenas},
  journal= {arXiv preprint arXiv:2107.05195},
  year   = {2021}
}

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36 pages, 0 figures