Distribution of Cracks in a Chain of Atoms at Low Temperature

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Date
2021
Volume
22
Issue
Journal
Annales Henri Poincaré
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Publisher
Cham (ZG) : Springer International Publishing AG
Abstract

We consider a one-dimensional classical many-body system with interaction potential of Lennard–Jones type in the thermodynamic limit at low temperature 1/β∈(0,∞). The ground state is a periodic lattice. We show that when the density is strictly smaller than the density of the ground state lattice, the system with N particles fills space by alternating approximately crystalline domains (clusters) with empty domains (voids) due to cracked bonds. The number of domains is of the order of Nexp(−βesurf/2) with esurf>0 a surface energy. For the proof, the system is mapped to an effective model, which is a low-density lattice gas of defects. The results require conditions on the interactions between defects. We succeed in verifying these conditions for next-nearest neighbor interactions, applying recently derived uniform estimates of correlations.

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Citation
Jansen, S., König, W., Schmidt, B., & Theil, F. (2021). Distribution of Cracks in a Chain of Atoms at Low Temperature (Cham (ZG) : Springer International Publishing AG). Cham (ZG) : Springer International Publishing AG. https://doi.org//10.1007/s00023-021-01076-7
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CC BY 4.0 Unported