Wave-based liquid-interface metamaterials.

Abstract:

:The control of matter motion at liquid-gas interfaces opens an opportunity to create two-dimensional materials with remotely tunable properties. In analogy with optical lattices used in ultra-cold atom physics, such materials can be created by a wave field capable of dynamically guiding matter into periodic spatial structures. Here we show experimentally that such structures can be realized at the macroscopic scale on a liquid surface by using rotating waves. The wave angular momentum is transferred to floating micro-particles, guiding them along closed trajectories. These orbits form stable spatially periodic patterns, the unit cells of a two-dimensional wave-based material. Such dynamic patterns, a mirror image of the concept of metamaterials, are scalable and biocompatible. They can be used in assembly applications, conversion of wave energy into mean two-dimensional flows and for organising motion of active swimmers.

journal_name

Nat Commun

journal_title

Nature communications

authors

Francois N,Xia H,Punzmann H,Fontana PW,Shats M

doi

10.1038/ncomms14325

subject

Has Abstract

pub_date

2017-02-09 00:00:00

pages

14325

issn

2041-1723

pii

ncomms14325

journal_volume

8

pub_type

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