The asymmetric propagation of mechanical energy across interfaces is a challenging problem with a wide range of applications. In this work, we present a novel structure presenting the asymmetric propagation of elastic waves in thin plates in a broadband range. The structure consists of a combination of symmetrically and asymmetrically distributed pillars, so that the former decouple the different Lamb modes and the latter mix all of them. We show that a combination in tandem with these two structures can realize an efficient broadband asymmetric propagation at the subwavelength range and achieve a transmission difference larger than 200 dB between forward and backward directions. The proposed pillared meta-plate brings a new way for subwave...
The guiding of elastic waves in a two-dimensional graded phononic crystal plate is investigated. Thi...
Wave refraction at an interface between different materials is a basic yet fundamental phenomenon, t...
The purpose of this dissertation is to model, simulate and design metamaterials for underwater sound...
The advent of acoustic metamaterials has opened up an emerging frontier in the control of sound tran...
Asymmetric propagation of acoustic waves is theoretically reported in a chirped phononic crystal mad...
We study single-beam deflection and asymmetry in transmission, two aspects of the same phenomenon th...
Wave attenuation, filtering and guiding is an ongoing topic of scientific research, as there are ma...
© 2018 Chinese Physical Society and IOP Publishing Ltd. Acoustic one-way manipulations have recently...
International audienceA one-dimensional wave propagation through elastically asymmetric media is inv...
In metamaterial science, local resonance and hybridization are key phenomena strongly influencing th...
Phononic crystal plates (PhPs) have astonishing characteristic in manipulation of elastodynamic guid...
We numerically and experimentally demonstrate highly asymmetric transmission of linearly polarized w...
In metamaterial science, local resonance and hybridization are key phenomena strongly influencing th...
This is the final version. Available from the American Physical Society via the DOI in this recordDe...
Broadband impedance matching and zero reflection of acoustic waves at a planar interface between two...
The guiding of elastic waves in a two-dimensional graded phononic crystal plate is investigated. Thi...
Wave refraction at an interface between different materials is a basic yet fundamental phenomenon, t...
The purpose of this dissertation is to model, simulate and design metamaterials for underwater sound...
The advent of acoustic metamaterials has opened up an emerging frontier in the control of sound tran...
Asymmetric propagation of acoustic waves is theoretically reported in a chirped phononic crystal mad...
We study single-beam deflection and asymmetry in transmission, two aspects of the same phenomenon th...
Wave attenuation, filtering and guiding is an ongoing topic of scientific research, as there are ma...
© 2018 Chinese Physical Society and IOP Publishing Ltd. Acoustic one-way manipulations have recently...
International audienceA one-dimensional wave propagation through elastically asymmetric media is inv...
In metamaterial science, local resonance and hybridization are key phenomena strongly influencing th...
Phononic crystal plates (PhPs) have astonishing characteristic in manipulation of elastodynamic guid...
We numerically and experimentally demonstrate highly asymmetric transmission of linearly polarized w...
In metamaterial science, local resonance and hybridization are key phenomena strongly influencing th...
This is the final version. Available from the American Physical Society via the DOI in this recordDe...
Broadband impedance matching and zero reflection of acoustic waves at a planar interface between two...
The guiding of elastic waves in a two-dimensional graded phononic crystal plate is investigated. Thi...
Wave refraction at an interface between different materials is a basic yet fundamental phenomenon, t...
The purpose of this dissertation is to model, simulate and design metamaterials for underwater sound...