Article ID | Journal | Published Year | Pages | File Type |
---|---|---|---|---|
1485904 | Journal of Non-Crystalline Solids | 2006 | 7 Pages |
Abstract
We have investigated the glassy behavior of a molecular crystal built up with chloroadamantane molecules. For a simple model of this molecule and a rigid fcc lattice a MD-simulation was performed from which we obtained the dynamical orientational correlators Sλλâ²(q,t) and the 'self' correlators Sλλâ²(s)(t), with λ = (â, m), λâ²Â = (ââ², mâ²). Our investigations are for the diagonal correlators λ = λâ². Since the lattice constant decreases with decreasing temperature which leads to an increase of the steric hindrance of the molecules, we find a strong slowing down of the relaxation. It has a high sensitivity on λ, λâ². For most (â, m), there is a two-step relaxation process, but practically not for (â, m) = (2, 1), (3, 2), (4, 1) and (4, 3). Our results are consistent with the α-relaxation scaling laws predicted by mode coupling theory from which we deduce the glass transition temperature TcMDâ
217K. From a first-principle solution of the mode coupling equations we find TcMCTâ
267K. Furthermore mode coupling theory reproduces the absence of a two-step relaxation process for (â, m) = (2, 1), (3, 2), (4, 1) and (4, 3), but underestimates the critical nonergodicity parameters by about 50 per cent for all other (â, m). It is suggested that this underestimation originates from the anisotropic crystal field which is not accounted for by mode coupling theory. Our results also imply that phonons have no essential influence on the long time relaxation.
Keywords
Related Topics
Physical Sciences and Engineering
Materials Science
Ceramics and Composites
Authors
M. Ricker, F. Affouard, R. Schilling, M. Descamps,