Unitary unfoldings of Bose-Hubbard exceptional point with and without
particle number conservation
- URL: http://arxiv.org/abs/2008.12844v1
- Date: Fri, 28 Aug 2020 21:06:17 GMT
- Title: Unitary unfoldings of Bose-Hubbard exceptional point with and without
particle number conservation
- Authors: Miloslav Znojil
- Abstract summary: Non-Hermitian but $cal PT-$symmetric quantum system of an $N-$plet of bosons described by Bose-Hubbard Hamiltonian $H(gamma,v,c)$ is picked up.
Non-Hermitian but $cal PT-$symmetric quantum system of an $N-$plet of bosons described by the three-parametric Bose-Hubbard Hamiltonian $H(gamma,v,c)$ is picked up.
- Score: 0.0
- License: http://arxiv.org/licenses/nonexclusive-distrib/1.0/
- Abstract: Non-Hermitian but ${\cal PT}-$symmetric quantum system of an $N-$plet of
bosons described by the three-parametric Bose-Hubbard Hamiltonian
$H(\gamma,v,c)$ is picked up, in its special exceptional-point limit $c \to 0$
and $\gamma \to v$, as an unperturbed part of the family of generalized
Bose-Hubbard-like Hamiltonians $\mathfrak{H}(\lambda)=H(v,v,0)+\lambda\,{\cal
V}$ for which the unitarity of the perturbed system is required. This leads to
the construction of two different families of Hamiltonians
$\mathfrak{H}(\lambda)$. In the first one the number $N$ of bosons is assumed
conserved while in the second family such an assumption is relaxed. In both
cases the anisotropy of the related physical Hilbert space is shown reflected
by a highly counterintuitive but operationally realizable structure of
admissible perturbations $\lambda\,{\cal V}$.
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