Energy Transport of Jammed Systems

ORAL

Abstract

We performed computer simulations to calculate the thermal diffusivity of vibrational modes in jammed sphere packings near the jamming transition (Point J). The diffusivity $d(\omega)$ is low for all modes, including those at low frequency $\omega$, and appears to be finite in the zero frequency limit. In ordinary solids, by contrast, $d(\omega)$ diverges at low frequencies due to long wavelength plane waves. The low- frequency modes near Point J are very different from plane waves: they are quasi-localized with large anharmonic corrections. Thus, these modes, which can be viewed as harmonic precursors to two-level systems, are poor conductors of energy.

*Supported by DE-FG02-05ER46199 and DE-FG02-03ER46088

Authors

  • Ning Xu

    • University of Pennsylvania and University of Chicago
  • Vincenzo Vitelli

    • University of Pennsylvania
    • University of Pennsylvanya
  • Matthieu Wyart

    • Harvard University
  • Andrea Liu

    • University of Pennsylvania
    • University of Pennsylvania, Department of Physics and Astronomy
  • Sidney Nagel

    • University of Chicago