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Detecting dimensional crossover and finite Hilbert space through entanglement entropies

arXiv
Authors: Mariano Garagiola, Eloisa Cuestas, Federico M. Pont, Pablo Serra, Omar Osenda

Year

2016

Paper ID

43152

Status

Preprint

Abstract Read

~2 min

Abstract Words

169

Citations

N/A

Abstract

The information content of the two-particle one- and two-dimensional Calogero model is studied using the von Neumann and Rényi entropies. The one-dimensional model is shown to have non-monotonic entropies with finite values in the large interaction strength limit. On the other hand, the von Neumann entropy of the two-dimensional model with isotropic confinement is a monotone increasing function of the interaction strength which diverges logarithmically. By considering an anisotropic confinement in the two-dimensional case we show that the one-dimensional behavior is eventually reached when the anisotropy increases. The crossover from two to one dimensions is demonstrated using the harmonic approximation and it is shown that the von Neumann divergence only occurs in the isotropic case. The Rényi entropies are used to highlight the structure of the model spectrum. In particular, it is shown that these entropies have a non-monotonic and non-analytical behavior in the neighborhood of the interaction strength parameter values where the Hilbert space and, consequently, the spectrum of the reduced density matrix are both finite.

Why This Paper Matters

  • This paper contributes to the Entanglement Theory & Quantum Correlations research area in the Quantum Articles archive.
  • It adds a 2016 reference point for readers tracking recent quantum research.
  • The information content of the two-particle one- and two-dimensional Calogero model is studied using the von Neumann and Rényi entropies.

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