Potential energy landscape of a model glass former: Thermodynamics, anharmonicities, and finite size effects

Stephan Büchner and Andreas Heuer
Phys. Rev. E 60, 6507 – Published 1 December 1999
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Abstract

It is possible to formulate the thermodynamics of a glass forming system in terms of the properties of inherent structures, which correspond to the minima of the potential energy and build up the potential energy landscape in the high-dimensional configuration space. In this work we quantitatively apply this general approach to a simulated model glass-forming system. We systematically vary the system size between N=20 and N=160. This analysis enables us to determine for which temperature range the properties of the glass former are governed by the regions of the configuration space, close to the inherent structures. Furthermore, we obtain detailed information about the nature of anharmonic contributions. Moreover, we can explain the presence of finite size effects in terms of specific properties of the energy landscape. Finally, determination of the total number of inherent structures for very small systems enables us to estimate the Kauzmann temperature.

  • Received 21 June 1999

DOI:https://doi.org/10.1103/PhysRevE.60.6507

©1999 American Physical Society

Authors & Affiliations

Stephan Büchner and Andreas Heuer

  • Max-Planck-Institut für Polymerforschung, Ackermannweg 10, D-55128 Mainz, Germany

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Vol. 60, Iss. 6 — December 1999

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