TY - GEN
T1 - Transparency effect induced by elastic metamaterials
AU - Zhou, Xiaoming
AU - Hu, Jin
AU - Hu, Gengkai
PY - 2008
Y1 - 2008
N2 - In the quasi-static limit, it is shown that the neutral inclusion concept can be applied to predict the transparency phenomenon. The transparency designs for a coated ellipsoid for electromagnetic wave and a multilayered sphere for acoustic wave with metamaterials have been proposed. In this paper, we will show how to cloak a solid object with elastic wave metamaterial, where the shear wave in the system is nontrivial. Based on the Mie theory, it is shown that the effective bulk modulus, mass density, and shear modulus of the assemblage made of the coated spheres dominate the zero, the first and the second order scattering coefficients of one coated sphere, respectively. So letting the first three scattering coefficients vanish, the isotropic coated metamaterial can be determined in order to make a spherical object transparent for elastic wave, this again corresponds to the neutral inclusion concept.
AB - In the quasi-static limit, it is shown that the neutral inclusion concept can be applied to predict the transparency phenomenon. The transparency designs for a coated ellipsoid for electromagnetic wave and a multilayered sphere for acoustic wave with metamaterials have been proposed. In this paper, we will show how to cloak a solid object with elastic wave metamaterial, where the shear wave in the system is nontrivial. Based on the Mie theory, it is shown that the effective bulk modulus, mass density, and shear modulus of the assemblage made of the coated spheres dominate the zero, the first and the second order scattering coefficients of one coated sphere, respectively. So letting the first three scattering coefficients vanish, the isotropic coated metamaterial can be determined in order to make a spherical object transparent for elastic wave, this again corresponds to the neutral inclusion concept.
UR - http://www.scopus.com/inward/record.url?scp=84898979678&partnerID=8YFLogxK
M3 - Conference contribution
AN - SCOPUS:84898979678
SN - 9781618390530
T3 - Progress in Electromagnetics Research Symposium
SP - 950
EP - 953
BT - Progress in Electromagnetics Research Symposium 2008, PIERS 2008 Hangzhou
PB - Electromagnetics Academy
T2 - Progress in Electromagnetics Research Symposium 2008, PIERS 2008 Hangzhou
Y2 - 24 March 2008 through 28 March 2008
ER -