Thermal Quantum Correlations in Two Gravitational Cat States

Author:

Rojas Moises1ORCID,Lobo Iarley P.12ORCID

Affiliation:

1. Physics Department, Federal University of Lavras, Caixa Postal 3037, Lavras 37200-000, MG, Brazil

2. Department of Chemistry and Physics, Federal University of Paraíba, Rodovia BR 079-Km 12, Areia 58397-000, PB, Brazil

Abstract

We consider the effect of a thermal bath on quantum correlations induced by the gravitational interaction in the weak field limit between two massive cat states, called gravitational cat (gravcat) states. The main goal of this paper is to provide a good understanding of the effects of temperature and several parameters in the entanglement (measured by the concurrence) and quantum coherence (measured by the l1-norm that is defined from the minimal distance between the quantum state and the set of incoherent states) which are derived from the thermal quantum density operator. Our results show that the thermal concurrence and l1-norm can be significantly optimized by increasing the masses or decreasing the distance between them. We investigate and discuss the behavior of these quantities under temperature variations in different regimes, including some that are expected to be experimentally feasible in the future. In particular, we observe that thermal fluctuations raise non-entangled quantum correlations when entanglement suddenly drops.

Funder

CAPES

FAPEMIG

National Council for Scientific and Technological Development-CNPq

Paraíba State Research Foundation

Publisher

MDPI AG

Subject

General Physics and Astronomy

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