TY - JOUR
T1 - Elastic wave localization in two-dimensional phononic crystals with one-dimensional random disorder and aperiodicity
AU - Yan, Zhi Zhong
AU - Zhang, Chuanzeng
AU - Wang, Yue Sheng
PY - 2011/3/1
Y1 - 2011/3/1
N2 - The band structures of in-plane elastic waves propagating in two-dimensional phononic crystals with one-dimensional random disorder and aperiodicity are analyzed in this paper. The localization of wave propagation is discussed by introducing the concept of the localization factor, which is calculated by the plane-wave-based transfer-matrix method. By treating the random disorder and aperiodicity as the deviation from the periodicity in a special way, three kinds of aperiodic phononic crystals that have normally distributed random disorder, ThueMorse and RudinShapiro sequence in one direction and translational symmetry in the other direction are considered and the band structures are characterized using localization factors. Besides, as a special case, we analyze the band gap properties of a periodic planar layered composite containing a periodic array of square inclusions. The transmission coefficients based on eigen-mode matching theory are also calculated and the results show the same behaviors as the localization factor does. In the case of random disorders, the localization degree of the normally distributed random disorder is larger than that of the uniformly distributed random disorder although the eigenstates are both localized no matter what types of random disorders, whereas, for the case of ThueMorse and RudinShapiro structures, the band structures of ThueMorse sequence exhibit similarities with the quasi-periodic (Fibonacci) sequence not present in the results of the RudinShapiro sequence.
AB - The band structures of in-plane elastic waves propagating in two-dimensional phononic crystals with one-dimensional random disorder and aperiodicity are analyzed in this paper. The localization of wave propagation is discussed by introducing the concept of the localization factor, which is calculated by the plane-wave-based transfer-matrix method. By treating the random disorder and aperiodicity as the deviation from the periodicity in a special way, three kinds of aperiodic phononic crystals that have normally distributed random disorder, ThueMorse and RudinShapiro sequence in one direction and translational symmetry in the other direction are considered and the band structures are characterized using localization factors. Besides, as a special case, we analyze the band gap properties of a periodic planar layered composite containing a periodic array of square inclusions. The transmission coefficients based on eigen-mode matching theory are also calculated and the results show the same behaviors as the localization factor does. In the case of random disorders, the localization degree of the normally distributed random disorder is larger than that of the uniformly distributed random disorder although the eigenstates are both localized no matter what types of random disorders, whereas, for the case of ThueMorse and RudinShapiro structures, the band structures of ThueMorse sequence exhibit similarities with the quasi-periodic (Fibonacci) sequence not present in the results of the RudinShapiro sequence.
KW - Aperiodic phononic crystal
KW - Disorder
KW - Eigen-mode matching theory
KW - Localization factors
KW - Plane-wave-based transfer-matrix method
UR - http://www.scopus.com/inward/record.url?scp=79951556310&partnerID=8YFLogxK
U2 - 10.1016/j.physb.2010.12.073
DO - 10.1016/j.physb.2010.12.073
M3 - Article
AN - SCOPUS:79951556310
SN - 0921-4526
VL - 406
SP - 1154
EP - 1161
JO - Physica B: Condensed Matter
JF - Physica B: Condensed Matter
IS - 5
ER -