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, una...
Strategically combining four structured domains creates the first ever three-way topological energy-...
We report localized and unidirectional nonlinear traveling edge waves in a 2D mechanical (phononic) ...
The capability of manipulation of the flow of mechanical energy in the form of mechanical waves (inc...
International audienceWe investigate symmetry-protected topological water waves within a strategical...
The discovery of topological phases of matter, initially driven by theoretical advances in quantum c...
This thesis concerns the study of Hydro-Elastic Waves (HEW): waves at the surface of a liquid intera...
We systematically engineer a series of square and rectangular phononic crystals to create experiment...
International audienceWe consider experimentally and theoretically the existence of topological edge...
Thesis (Ph.D.)--University of Washington, 2021In the past few decades, using metamaterials to contro...
Topological concepts have been introduced into electronic, photonic, and phononic systems, but have ...
In systems with non-trivial topologies that violate time-reversal symmetry, the bulk-boundary corres...
Thesis (Ph.D.)--University of Washington, 2018Due to the recent discovery of topological insulators ...
International audienceWe use square and rectangular phononic crystals to create experimental realiza...
International audienceThe topological backscattering immunity of waves guided along a domain wall is...
Strategically combining four structured domains creates the first ever three-way topological energy-...
We report localized and unidirectional nonlinear traveling edge waves in a 2D mechanical (phononic) ...
The capability of manipulation of the flow of mechanical energy in the form of mechanical waves (inc...
International audienceWe investigate symmetry-protected topological water waves within a strategical...
The discovery of topological phases of matter, initially driven by theoretical advances in quantum c...
This thesis concerns the study of Hydro-Elastic Waves (HEW): waves at the surface of a liquid intera...
We systematically engineer a series of square and rectangular phononic crystals to create experiment...
International audienceWe consider experimentally and theoretically the existence of topological edge...
Thesis (Ph.D.)--University of Washington, 2021In the past few decades, using metamaterials to contro...
Topological concepts have been introduced into electronic, photonic, and phononic systems, but have ...
In systems with non-trivial topologies that violate time-reversal symmetry, the bulk-boundary corres...
Thesis (Ph.D.)--University of Washington, 2018Due to the recent discovery of topological insulators ...
International audienceWe use square and rectangular phononic crystals to create experimental realiza...
International audienceThe topological backscattering immunity of waves guided along a domain wall is...
Strategically combining four structured domains creates the first ever three-way topological energy-...
We report localized and unidirectional nonlinear traveling edge waves in a 2D mechanical (phononic) ...
The capability of manipulation of the flow of mechanical energy in the form of mechanical waves (inc...