Transport and chaos in lattice Sachdev-Ye-Kitaev models

ORAL

Abstract

We compute the transport and chaos properties of lattices of quantum Sachdev-Ye-Kitaev islands coupled by single fermion hopping, and with the islands coupled to a large number of local, low energy phonons. We find two distinct regimes of linear-in-temperature (T) resistivity, and describe the crossover between them. When the electron-phonon coupling is weak, we obtain the “incoherent metal” regime, where there is near-maximal chaos with front propagation at a butterfly velocity vB, and the associated diffusivity Dchaos = (vB)2 /(2πT) closely tracks the energy diffusivity. On the other hand, when the electron-phonon coupling is strong, and the linear resistivity is largely due to near-elastic scattering of electrons off nearly free phonons, we find that the chaos is far from maximal and spreads diffusively. We also describe the crossovers to low T regimes where the electronic quasiparticles are well defined.

*This research was supported by the U.S. Department of Energy under Grant No. DESC0019030. Y.G. is also supported by the Gordon and Betty Moore Foundation EPiQS Initiative through Grant (GBMF4306). This work was performed in part at the Aspen Center for Physics, which is supported by National Science Foundation Grant PHY-1607611.

Presenters

  • Haoyu Guo

    • Harvard University
    • Department of Physics, Harvard University

Authors

  • Haoyu Guo

    • Harvard University
    • Department of Physics, Harvard University
  • Yingfei Gu

    • Harvard University
    • Havard
    • Department of Physics, Harvard University
  • Subir Sachdev

    • Physics, Harvard University
    • Harvard University
    • Department of Physics, Harvard University