English

Atoms confined by very thin layers

Mathematical Physics 2014-07-01 v2 math.MP Quantum Physics

Abstract

The Hamiltonian of an atom with NN electrons and a fixed nucleus of infinite mass between two parallel planes is considered in the limit when the distance aa between the planes tends to zero. We show that this Hamiltonian converges in the norm resolvent sense to a Schr\"{o}dinger operator acting effectively in L2(R2N)L^{2}(\mathbb{R}^{2N}) whose potential part depends on aa. Moreover, we prove that after an appropriate regularization this Schr\"{o}dinger operator tends, again in the norm resolvent sense, to the Hamiltonian of a two-dimensional atom (with the three-dimensional Coulomb potential-one over distance), as a0a\to 0. This makes possible to locate the discrete spectrum of the full Hamiltonian once we know the spectrum of the latter one. Our results also provide a mathematical justification for the interest in the two-dimensional atoms with the three-dimensional Coulomb potential.

Keywords

Cite

@article{arxiv.1205.2260,
  title  = {Atoms confined by very thin layers},
  author = {Matej Tusek},
  journal= {arXiv preprint arXiv:1205.2260},
  year   = {2014}
}
R2 v1 2026-06-21T21:01:34.981Z