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Inhomogeneous Elastic Response of Silica Glass

by: F. Léonforte, A. Tanguy, J. P. Wittmer, J. L. Barrat
Physical Review Letters, Vol. 97, No. 5. (Jul 2006), pp. 055501-055501, doi:10.1103/physrevlett.97.055501  Key: citeulike:9390043

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Abstract

Using large scale molecular dynamics simulations we investigate the properties of the nonaffine displacement field induced by macroscopic uniaxial deformation of amorphous silica, a strong glass according to Angell’s classification. We demonstrate the existence of a length scale ξ characterizing the correlations of this field (corresponding to a volume of about 1000 atoms), and compare its structure to the one observed in a standard fragile model glass. The “boson-peak” anomaly of the density of states can be traced back in both cases to elastic inhomogeneities on wavelengths smaller than ξ where classical continuum elasticity becomes simply unapplicable.


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