English

The dynamics of quantum criticality via Quantum Monte Carlo and holography

Strongly Correlated Electrons 2014-05-06 v2 Quantum Gases General Relativity and Quantum Cosmology High Energy Physics - Theory

Abstract

Understanding the real time dynamics of quantum systems without quasiparticles constitutes an important yet challenging problem. We study the superfluid-insulator quantum-critical point of bosons on a two-dimensional lattice, a system whose excitations cannot be described in a quasiparticle basis. We present detailed quantum Monte Carlo results for two separate lattice realizations: their low-frequency conductivities are found to have the same universal dependence on imaginary frequency and temperature. We then use the structure of the real time dynamics of conformal field theories described by the holographic gauge/gravity duality to make progress on the difficult problem of analytically continuing the Monte Carlo data to real time. Our method yields quantitative and experimentally testable results on the frequency-dependent conductivity near the quantum critical point, and on the spectrum of quasinormal modes in the vicinity of the superfluid-insulator quantum phase transition. Extensions to other observables and universality classes are discussed.

Keywords

Cite

@article{arxiv.1309.2941,
  title  = {The dynamics of quantum criticality via Quantum Monte Carlo and holography},
  author = {William Witczak-Krempa and Erik Sorensen and Subir Sachdev},
  journal= {arXiv preprint arXiv:1309.2941},
  year   = {2014}
}

Comments

12+12 pages, 6+1 figures. v2: Improved numerical results and presentation. 2 new appendices