English

Quantum discord in spin systems with dipole-dipole interaction

Quantum Physics 2013-01-24 v1

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 TT, at first the quantum correlations in the system increase, smoothly reach the maximum, and then turn again into zero according to the asymptotic law T2T^{-2}. It is also shown that in absence of external magnetic field BB, the classical correlation CC at T0T\to0 is, vice versa, maximal. Our calculations predict that in crystalline gypsum CaSO42H2O{\rm CaSO_4\cdot2H_2O} the value of natural (B=0) quantum discord between nuclear spins of hydrogen atoms is maximal at the temperature of 0.644 μ\muK, and for 1,2-dichloroethane H2ClCCH2Cl{\rm H_2ClC-CH_2Cl} the discord achieves the largest value at T=0.517μT=0.517 \muK. In both cases, the discord equals Q0.083Q\approx0.083 bit/dimer what is 8.3% of its upper limit in two-qubit systems. We estimate also that for gypsum at room temperature Q1018Q\sim10^{-18} bit/dimer, and for 1,2-dichloroethane at T=90 K the discord is Q1017Q\sim10^{-17} 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

R2 v1 2026-06-21T23:13:56.084Z