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Acoustic measurement of a granular density of modes
2013
Soft Matter
In glasses and other disordered materials, measurements of the vibrational density of states reveal that an excess number of long-wavelength (low-frequency) modes, as compared to the Debye scaling seen in crystalline materials, is associated with a loss of mechanical rigidity. In this paper, we present a novel technique for measuring the density of modes (DOM) in a real granular material, in which we excite vibrational modes using white noise acoustic waves. The resulting vibrations are
doi:10.1039/c2sm27122b
fatcat:6emshps6vbh2tp4wr2ivihb5qe