Cervera F, Sanchis L, Sánchez-Pérez J V, Martínez-Sala R, Rubio C, Meseguer F, López C, Caballero D, Sánchez-Dehesa J
Centro Tecnológico de Ondas, Unidad Asociada de Investigación (CSIC-UPV), Edificio de Institutos II, Universidad Politécnica de Valencia, E-46022 Valencia, Spain.
Phys Rev Lett. 2002 Jan 14;88(2):023902. doi: 10.1103/PhysRevLett.88.023902. Epub 2001 Dec 27.
We show that a sonic crystal made of periodic distributions of rigid cylinders in air acts as a new material which allows the construction of refractive acoustic devices for airborne sound. It is demonstrated that, in the long-wave regime, the crystal has low impedance and the sound is transmitted at subsonic velocities. Here, the fabrication and characterization of a convergent lens are presented. Also, an example of a Fabry-Perot interferometer based on this crystal is analyzed. It is concluded that refractive devices based on sonic crystals behave in a manner similar to that of optical systems.
我们表明,由空气中刚性圆柱体的周期性分布构成的声子晶体可作为一种新型材料,用于构建用于空气传播声音的折射声学器件。结果表明,在长波区域,该晶体具有低阻抗,声音以亚音速传播。在此,我们展示了一种会聚透镜的制造与特性。此外,还分析了基于这种晶体的法布里 - 珀罗干涉仪的一个实例。得出的结论是,基于声子晶体的折射器件的行为方式与光学系统类似。