We present a tunable phononic crystal which can be switched from a mechanically insulating to a mechanically conductive (transmissive) state. Specifically, in our simulations for a phononic lattice under biaxial tension (σxx = σyy = 0.01 N m−1), we find a bandgap for out-of-plane phonons in the range of 48.8–56.4 MHz, which we can close by increasing the degree of tension uniaxiality (σxx/σyy) to 1.7. To manipulate the tension distribution, we design a realistic device of finite size, where σxx/σyy is tuned by applying a gate voltage to a phononic crystal made from suspended graphene. We show that the bandgap closing can be probed via acoustic transmission measurements and that the phononic bandgap persists even after the inclusion of surfa...
We demonstrate high-frequency mechanical resonators in ballistic graphene p-n junctions. Fully suspe...
A major achievement of the past decade has been the realization of macroscopic quantum systems by ex...
Mechanical strain can lead to a synthetic gauge field that controls the dynamics of electrons in gra...
In the field of phononics, periodic patterning controls vibrations and thereby the flow of heat and ...
We demonstrate simultaneous strong confinement and interaction of photons and phonons in a quasi two...
We investigate the tunability of phononic crystals consisting of arrays of cylindrical elements usin...
Nanoelectromechanical systems (NEMS) that operate in the megahertz (MHz) regime allow energy transdu...
Micro- and nanomechanical systems with exceptionally low dissipation rates are enabling the next-gen...
peer-reviewedTwo-dimensional (2D) layers like graphene are subject to long-wavelength fluctuations t...
Micro and nanomechanical systems play an important role in modern science and technology. They are i...
AbstractTwo-dimensional (2D) layers like graphene are subject to long-wavelength fluctuations that m...
Graphene and related two-dimensional (2D) materials associate remarkable mechanical, electronic, opt...
Les cristaux phononiques sont des matériaux structurés périodiquement permettant le contrôle de la p...
We systematically engineer a series of square and rectangular phononic crystals to create experiment...
The mechanism of the shift of the band-gap in phononic crystal (PC) with different initial confining...
We demonstrate high-frequency mechanical resonators in ballistic graphene p-n junctions. Fully suspe...
A major achievement of the past decade has been the realization of macroscopic quantum systems by ex...
Mechanical strain can lead to a synthetic gauge field that controls the dynamics of electrons in gra...
In the field of phononics, periodic patterning controls vibrations and thereby the flow of heat and ...
We demonstrate simultaneous strong confinement and interaction of photons and phonons in a quasi two...
We investigate the tunability of phononic crystals consisting of arrays of cylindrical elements usin...
Nanoelectromechanical systems (NEMS) that operate in the megahertz (MHz) regime allow energy transdu...
Micro- and nanomechanical systems with exceptionally low dissipation rates are enabling the next-gen...
peer-reviewedTwo-dimensional (2D) layers like graphene are subject to long-wavelength fluctuations t...
Micro and nanomechanical systems play an important role in modern science and technology. They are i...
AbstractTwo-dimensional (2D) layers like graphene are subject to long-wavelength fluctuations that m...
Graphene and related two-dimensional (2D) materials associate remarkable mechanical, electronic, opt...
Les cristaux phononiques sont des matériaux structurés périodiquement permettant le contrôle de la p...
We systematically engineer a series of square and rectangular phononic crystals to create experiment...
The mechanism of the shift of the band-gap in phononic crystal (PC) with different initial confining...
We demonstrate high-frequency mechanical resonators in ballistic graphene p-n junctions. Fully suspe...
A major achievement of the past decade has been the realization of macroscopic quantum systems by ex...
Mechanical strain can lead to a synthetic gauge field that controls the dynamics of electrons in gra...