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The common and the exotic: exceptional topology in ordinary soft matter

POSTER

Abstract

We will discuss how hydrodynamics induces non-Hermitian topological phenomena in ordinary, passive soft matter. This is demonstrated by subjecting a two-dimensional elastic lattice to a low-Reynolds viscous flow. The interplay of hydrodynamics and elasticity splits Dirac cones into bulk Fermi arcs, pairing exceptional points with opposite half-integer topological charges. The bulk Fermi arc is a generic hallmark of the system exhibited in all lattice and flow symmetries. An analytic model and simulations explain how the emergent singularities shape the spectral bands and give rise to a web of van Hove singularity lines in the density of states. The present findings suggest that non-Hermitian physics can be explored in a broad class of ordinary soft matter, living and artificial alike, opening avenues for topology-based technology in this regime. Possible experimental realizations will be examined.

Publication: Exceptional topology in ordinary soft matter, PRE 2021, https://doi.org/10.1103/PhysRevE.104.025002

Presenters

  • Tsvi Tlusty

    Institute for Basic Science

Authors

  • Tsvi Tlusty

    Institute for Basic Science