paper

Band-Gap Engineering of Phononic Crystals: A Computational Survey of Two-Dimensional Systems

arXiv:0708.3669

Abstract

We present graphic results with high-levels of abstraction to desribe the basic principles and rules of thumb for acoustic or phononic band-gap engineering. We use these rules for developing an improved machien mount for damping acoustic vibrations, a phononic lens and a frequency selective filter in the acoustic regime.

12 pages, 8 figures

References in corpus (1)