Quantum discord in spin systems with dipole-dipole interaction
Abstract
The behavior of total purely quantum correlation (discord) in dimers consisting of dipolar-coupled spins 1/2 is studied. We found that the discord Q=0 at the absolute zero temperature. With increasing the temperature , at first the quantum correlations in the system increase, smoothly reach the maximum, and then turn again into zero according to the asymptotic law . It is also shown that in absence of external magnetic field , the classical correlation at is, vice versa, maximal. Our calculations predict that in crystalline gypsum the value of natural (B=0) quantum discord between nuclear spins of hydrogen atoms is maximal at the temperature of 0.644 K, and for 1,2-dichloroethane the discord achieves the largest value at K. In both cases, the discord equals bit/dimer what is 8.3% of its upper limit in two-qubit systems. We estimate also that for gypsum at room temperature bit/dimer, and for 1,2-dichloroethane at T=90 K the discord is bit per a dimer.
Cite
@article{arxiv.1301.5394,
title = {Quantum discord in spin systems with dipole-dipole interaction},
author = {E. I. Kuznetsova and M. A. Yurishchev},
journal= {arXiv preprint arXiv:1301.5394},
year = {2013}
}
Comments
11 pages, 6 figure