We predict theoretically the nondiffractive propagation of sonic waves in periodic acoustic media (sonic crystals), by expansion into a set of plane waves (Bloch mode expansion), and by finite difference time domain calculations of finite beams. We also give analytical evaluations of the parameters for nondiffractive propagation, as well as the minimum size of the nondiffractively propagating acoustic beams
The finite-difference time-domain (FDTD) method has been applied to the calculation of the phonon ba...
The finite-difference time-domain (FDTD) method has been applied to the calculation of the phonon ba...
International audienceThe plane wave expansion (PWE) method has been from the start at the heart of ...
Sonic crystals are media with a periodic modulation of the acoustic parameters, as the density and t...
Sonic crystals are media with a periodic modulation of the acoustic parameters, as the density and t...
We report the nondiffractive propagation of acoustic waved in sonic crystals, e.g., acoustic media w...
[EN] The propagation of intense acoustic waves in a periodic medium (sonic crystal) is numerically s...
The present work explores the theoretical basis of sound propagation through periodic media and prov...
[EN] Sonic crystals are defined as materials consisting of periodic distributions of acoustic scatte...
Electron material waves cannot permeate a periodic atomic lattice at each energy or frequency. There...
This work reports an introduction to the topic of wave propagation in sonic crystals and a review of...
The properties of sonic crystals (SC) are theoretically investigated in this work by solving the inv...
This work reports an introduction to the topic of wave propagation in sonic crystals and a review of...
AbstractThe propagation of intense acoustic waves in a periodic medium (sonic crystal) is numericall...
In this paper, we present a study of acoustic wave propagation in layered sonic crystals (SCs) with ...
The finite-difference time-domain (FDTD) method has been applied to the calculation of the phonon ba...
The finite-difference time-domain (FDTD) method has been applied to the calculation of the phonon ba...
International audienceThe plane wave expansion (PWE) method has been from the start at the heart of ...
Sonic crystals are media with a periodic modulation of the acoustic parameters, as the density and t...
Sonic crystals are media with a periodic modulation of the acoustic parameters, as the density and t...
We report the nondiffractive propagation of acoustic waved in sonic crystals, e.g., acoustic media w...
[EN] The propagation of intense acoustic waves in a periodic medium (sonic crystal) is numerically s...
The present work explores the theoretical basis of sound propagation through periodic media and prov...
[EN] Sonic crystals are defined as materials consisting of periodic distributions of acoustic scatte...
Electron material waves cannot permeate a periodic atomic lattice at each energy or frequency. There...
This work reports an introduction to the topic of wave propagation in sonic crystals and a review of...
The properties of sonic crystals (SC) are theoretically investigated in this work by solving the inv...
This work reports an introduction to the topic of wave propagation in sonic crystals and a review of...
AbstractThe propagation of intense acoustic waves in a periodic medium (sonic crystal) is numericall...
In this paper, we present a study of acoustic wave propagation in layered sonic crystals (SCs) with ...
The finite-difference time-domain (FDTD) method has been applied to the calculation of the phonon ba...
The finite-difference time-domain (FDTD) method has been applied to the calculation of the phonon ba...
International audienceThe plane wave expansion (PWE) method has been from the start at the heart of ...