Fluidity onset in graphene.

Bandurin, Denis A; Shytov, Andrey V; Levitov, Leonid S; Kumar, Roshan Krishna; Berdyugin, Alexey I; Ben Shalom, Moshe; Grigorieva, Irina V; Geim, Andre K et al. · Nat Commun · 2018

basic_science · Level V

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Abstract

Viscous electron fluids have emerged recently as a new paradigm of strongly-correlated electron transport in solids. Here we report on a direct observation of the transition to this long-sought-for state of matter in a high-mobility electron system in graphene. Unexpectedly, the electron flow is found to be interaction-dominated but non-hydrodynamic (quasiballistic) in a wide temperature range, showing signatures of viscous flows only at relatively high temperatures. The transition between the two regimes is characterized by a sharp maximum of negative resistance, probed in proximity to the current injector. The resistance decreases as the system goes deeper into the hydrodynamic regime. In a perfect darkness-before-daybreak manner, the interaction-dominated negative response is strongest at the transition to the quasiballistic regime. Our work provides the first demonstration of how the viscous fluid behavior emerges in an interacting electron system.