arXiv · 1207.5976
Phonon band structures of three-dimensional pentamode metamaterials
Abstract
Three-dimensional pentamode metamaterials are artificial solids that approximately behave like liquids, which have vanishing shear modulus. Pentamodes have recently become experimental reality. Here, we calculate their phonon band structures for various parameters. Consistent with static continuum mechanics, we find that compression and shear waves exhibit phase velocities that can realistically be different by more than one order of magnitude. Interestingly, we also find frequency intervals with more than two octaves bandwidth in which pure single-mode behavior is obtained. Herein, exclusively compression waves exist due to a complete three-dimensional band gap for shear waves and, hence, no coupling to shear modes is possible. Such single-mode behavior might, e.g., be interesting for transformation-elastodynamics architectures.
Explore related subjects
Keep this discovery
Aude Martin, Muamer Kadic, Robert Schittny, Tiemo Bückmann, Martin Wegener. 2012-07-25. Phonon band structures of three-dimensional pentamode metamaterials. https://doi.org/10.1103/physrevb.86.155116
Cite the original work for its findings. Save a collection to share your selection of sources.