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High Density Limit of the Fermi Polaron with Infinite Mass

Mathematical Physics 2019-02-20 v1 Quantum Gases math.MP

Abstract

We analyze the ground state energy for NN identical fermions in a two-dimensional box of volume L2L^2 interacting with an external point scatterer. Since the point scatterer can be considered as an impurity particle of infinite mass, this system is a limit case of the Fermi polaron. We prove that its ground state energy in the limit of high density N/L21N/L^2 \gg 1 is given by the polaron energy. The polaron energy is an energy estimate based on trial states up to first order in particle-hole expansion, which was proposed by F. Chevy in the physics literature. The relative error in our result is shown to be small uniformly in LL. Hence, we do not require a gap of fixed size in the spectrum of the Laplacian on the box. The strategy of our proof relies on a twofold Birman-Schwinger type argument applied to the many-particle Hamiltonian of the system.

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Cite

@article{arxiv.1807.06365,
  title  = {High Density Limit of the Fermi Polaron with Infinite Mass},
  author = {Ulrich Linden and David Mitrouskas},
  journal= {arXiv preprint arXiv:1807.06365},
  year   = {2019}
}

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17 pages