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NMR relaxation in the spin-1 Heisenberg chain

Strongly Correlated Electrons 2019-09-19 v2

Abstract

We consider the isotropic S=1S=1 Heisenberg chain with a finite Haldane gap Δ\Delta and use state-of-the-art numerical techniques to investigate its dynamical properties at finite temperature, focusing on the nuclear spin-lattice relaxation rate 1/T11/T_1 measured in nuclear magnetic resonance (NMR) experiments for instance. In particular, we analyze the contributions from modes with momenta close to q0q\approx 0 and qπq\approx \pi as a function of temperature. At high-temperature, we observe spin diffusion with a non-trivial exponent. At low-temperature, we argue that a simple activated behavior 1/T1exp(Δ/T)1/T_1 \propto\exp(-\Delta/T) can only be observed at temperatures much smaller than the gap Δ\Delta.

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Cite

@article{arxiv.1905.12697,
  title  = {NMR relaxation in the spin-1 Heisenberg chain},
  author = {Sylvain Capponi and Maxime Dupont and Anders W. Sandvik and Pinaki Sengupta},
  journal= {arXiv preprint arXiv:1905.12697},
  year   = {2019}
}

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