Experimental observations of topologically guided water waves within non-hexagonal structures
File(s)APL_published.pdf (1.7 MB)
Published version
Author(s)
Type
Journal Article
Abstract
We investigate symmetry-protected topological water waves within a strategically engineered square lattice system. Thus far, symmetry-protected topological modes in hexagonal systems have primarily been studied in electromagnetism and acoustics, i.e. dispersionless media. Herein, we show experimentally how crucial geometrical properties of square structures allow for topological transport that is ordinarily forbidden within conventional hexagonal structures. We perform numerical simulations that take into account the inherent dispersion within water waves and devise a topological insulator that supports symmetry-protected transport along the domain walls. Our measurements, viewed with a high-speed camera under stroboscopic illumination, unambiguously demonstrate the valley-locked transport of water waves within a non-hexagonal structure. Due to the tunability of the energy's directionality by geometry, our results could be used for developing highly-efficient energy harvesters, filters and beam-splitters within dispersive media.
Date Issued
2020-04-01
Date Acceptance
2020-03-01
Citation
Applied Physics Letters, 2020, 116, pp.131603-1-131603-5
ISSN
0003-6951
Publisher
AIP Publishing
Start Page
131603-1
End Page
131603-5
Journal / Book Title
Applied Physics Letters
Volume
116
Copyright Statement
© 2020 Author(s).
Sponsor
Engineering & Physical Science Research Council (EPSRC)
The Leverhulme Trust
Multiwave Innovation S.A.S
Identifier
https://aip.scitation.org/doi/10.1063/1.5141850
Grant Number
EP/L024926/1
RPG-2016-365
N/A
Subjects
physics.flu-dyn
physics.flu-dyn
cond-mat.mes-hall
Applied Physics
02 Physical Sciences
09 Engineering
10 Technology
Date Publish Online
2020-04-01