Typically, phonon trapping is performed using mechanically suspended structures which have many limitations. Here the authors study a phononic structure that supports mechanical bound states in the continuum (BICs) at microwave frequencies with topological features
We highlight the effect of structural hierarchy and deformation on band structure and wave-propagati...
Resumen del trabajo presentado al APS March Meeting, celebrado de forma virtual del 15 al 19 de marz...
Topological phases of matter have revolutionised the fundamental understanding of band theory and ho...
Bound states in continuum (BICs) are highly localized resonant states embedded in the continuum back...
Phononic crystals and acoustic metamaterials are heterogeneous materials that enable manipulation of...
It is well known that phonon modes become sensitive to the geometry of an object when the phonon wav...
Inspired by concepts developed for fermionic systems in the framework of condensed matter physics, t...
This talk will explore elastic and mechanical properties and mode structures of model periodic latti...
We analytically predict and numerically demonstrate the existence of a family of bound modes in the ...
The field of low-dimensional structures has been experiencing rapid development in both theoretical ...
Measuring the quantum dynamics of a mechanical system, when few phonons are involved, remains a chal...
International audienceOver the past three decades, phononic crystals (PnCs) have attracted scientifi...
Chipscale micro- and nano-optomechanical systems, hinging on the intangible radiation-pressure force...
We systematically engineer a series of square and rectangular phononic crystals to create experiment...
International audienceWe use square and rectangular phononic crystals to create experimental realiza...
We highlight the effect of structural hierarchy and deformation on band structure and wave-propagati...
Resumen del trabajo presentado al APS March Meeting, celebrado de forma virtual del 15 al 19 de marz...
Topological phases of matter have revolutionised the fundamental understanding of band theory and ho...
Bound states in continuum (BICs) are highly localized resonant states embedded in the continuum back...
Phononic crystals and acoustic metamaterials are heterogeneous materials that enable manipulation of...
It is well known that phonon modes become sensitive to the geometry of an object when the phonon wav...
Inspired by concepts developed for fermionic systems in the framework of condensed matter physics, t...
This talk will explore elastic and mechanical properties and mode structures of model periodic latti...
We analytically predict and numerically demonstrate the existence of a family of bound modes in the ...
The field of low-dimensional structures has been experiencing rapid development in both theoretical ...
Measuring the quantum dynamics of a mechanical system, when few phonons are involved, remains a chal...
International audienceOver the past three decades, phononic crystals (PnCs) have attracted scientifi...
Chipscale micro- and nano-optomechanical systems, hinging on the intangible radiation-pressure force...
We systematically engineer a series of square and rectangular phononic crystals to create experiment...
International audienceWe use square and rectangular phononic crystals to create experimental realiza...
We highlight the effect of structural hierarchy and deformation on band structure and wave-propagati...
Resumen del trabajo presentado al APS March Meeting, celebrado de forma virtual del 15 al 19 de marz...
Topological phases of matter have revolutionised the fundamental understanding of band theory and ho...