English

Acoustic interactions between inversion symmetric and asymmetric two-level systems

Mesoscale and Nanoscale Physics 2014-07-28 v3 Disordered Systems and Neural Networks

Abstract

Amorphous solids, as well as many disordered lattices, display remarkable universality in their low temperature acoustic properties. This universality is attributed to the attenuation of phonons by tunneling two-level systems (TLSs), facilitated by the interaction of the TLSs with the phonon field. TLS-phonon interaction also mediates effective TLS-TLS interactions, which dictates the existence of a glassy phase and its low energy properties. Here we consider KBr:CN, the archetypal disordered lattice showing universality. We calculate numerically, using conjugate gradients method, the effective TLS-TLS interactions for inversion symmetric (CN flips) and asymmetric (CN rotations) TLSs, in the absence and presence of disorder, in two and three dimensions. The observed dependence of the magnitude and spatial power law of the interaction on TLS symmetry, and its change with disorder, characterizes TLS-TLS interactions in disordered lattices in both extreme and moderate dilutions. Our results are in good agreement with the two-TLS model, recently introduced to explain long-standing questions regarding the quantitative universality of phonon attenuation and the energy scale of 13\approx 1-3 K below which universality is observed.

Keywords

Cite

@article{arxiv.1303.2955,
  title  = {Acoustic interactions between inversion symmetric and asymmetric two-level systems},
  author = {A. Churkin and D. Barash and M. Schechter},
  journal= {arXiv preprint arXiv:1303.2955},
  year   = {2014}
}

Comments

6 pages, 4 figures, final version

R2 v1 2026-06-21T23:40:58.357Z