We study simultaneous photonic and phononic crystal slabs created in Z-cut lithium niobate membranes. Bandgaps for guided waves are identified using the three-dimensional finite element method (FEM). Three lattices are considered: the square, the hexagonal, and the honeycomb lattices. We investigate the evolution of band gaps as a function of geometrical parameters such as hole radius and membrane thickness. We show the existence of dual photonic and phononic bandgaps in the triangular lattice for suitable geometrical parameters and specific modal symmetries for both the elastic and the electromagnetic fields
Phoxonic crystals, which exhibit simultaneous phononic and photonic bandgaps, are promising artifici...
International audienceWe demonstrate the existence of non-radiative complete surface acoustic wave(S...
We theoretically and experimentally demonstrate the existence of complete surface acoustic wave band...
International audienceWe study simultaneous photonic and phononic crystal slabs created in Z-cut lit...
International audienceThe possibility to obtain hypersonic phononic band gaps in artificial crystals...
We discuss the simultaneous existence of phononic and photonic band gaps in a periodic array of hole...
We discuss the simultaneous existence of phononic and photonic band gaps in two types of phononic cr...
International audienceWe discuss the simultaneous existence of phononic and photonic band gaps in a ...
We discuss the simultaneous existence of phononic and photonic band gaps in a periodic array of hole...
International audienceThe simultaneous existence of photonic and phononic band gaps opens up many po...
© 2010 Optical Society of AmericaThe definitive version of this paper is available at:http://dx.doi....
[EN] We discuss the simultaneous existence of phoxonic, i.e., phononic and photonic, band gaps in a ...
Recently, the possibility to create simultaneously a photonic and phononic crystal has been demonstr...
The photonic and phononic band gap properties of lithium niobate are investigated both theoretically...
International audienceThe simultaneous existence of photonic and phononic band gaps opens up many po...
Phoxonic crystals, which exhibit simultaneous phononic and photonic bandgaps, are promising artifici...
International audienceWe demonstrate the existence of non-radiative complete surface acoustic wave(S...
We theoretically and experimentally demonstrate the existence of complete surface acoustic wave band...
International audienceWe study simultaneous photonic and phononic crystal slabs created in Z-cut lit...
International audienceThe possibility to obtain hypersonic phononic band gaps in artificial crystals...
We discuss the simultaneous existence of phononic and photonic band gaps in a periodic array of hole...
We discuss the simultaneous existence of phononic and photonic band gaps in two types of phononic cr...
International audienceWe discuss the simultaneous existence of phononic and photonic band gaps in a ...
We discuss the simultaneous existence of phononic and photonic band gaps in a periodic array of hole...
International audienceThe simultaneous existence of photonic and phononic band gaps opens up many po...
© 2010 Optical Society of AmericaThe definitive version of this paper is available at:http://dx.doi....
[EN] We discuss the simultaneous existence of phoxonic, i.e., phononic and photonic, band gaps in a ...
Recently, the possibility to create simultaneously a photonic and phononic crystal has been demonstr...
The photonic and phononic band gap properties of lithium niobate are investigated both theoretically...
International audienceThe simultaneous existence of photonic and phononic band gaps opens up many po...
Phoxonic crystals, which exhibit simultaneous phononic and photonic bandgaps, are promising artifici...
International audienceWe demonstrate the existence of non-radiative complete surface acoustic wave(S...
We theoretically and experimentally demonstrate the existence of complete surface acoustic wave band...