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Phys. Rev. E 80, 031602 (2009) [10 pages]

Thermodynamics of bcc metals in phase-field-crystal models

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A. Jaatinen1,2, C. V. Achim1, K. R. Elder3, and T. Ala-Nissila1,4
1Department of Applied Physics, COMP Center of Excellence, Helsinki University of Technology, P.O. Box 1100, Helsinki FIN-02015 TKK, Finland
2Department of Materials Science and Engineering, Helsinki University of Technology, P.O. Box 6200, Helsinki FIN-02015 TKK, Finland
3Department of Physics, Oakland University, Rochester, Michigan 48309-4487, USA
4Department of Physics, Brown University, Providence, Rhode Island 02912-1843, USA

Received 30 April 2009; revised 16 July 2009; published 9 September 2009

We examine the influence of different forms of the free-energy functionals used in the phase-field-crystal (PFC) model, and compare them with the second-order density-functional theory (DFT) of freezing, by using bcc iron as an example case. We show that there are large differences between the PFC and the DFT and it is difficult to obtain reasonable parameters for existing PFC models directly from the DFT. Therefore, we propose a way of expanding the correlation function in terms of gradients that allows us to incorporate the bulk modulus of the liquid as an additional parameter in the theory. We show that this functional reproduces reasonable values for both bulk and surface properties of bcc iron, and therefore it should be useful in modeling bcc materials. As a further demonstration, we also calculate the grain boundary energy as a function of misorientation for a symmetric tilt boundary close to the melting transition.

© 2009 The American Physical Society

URL:
http://link.aps.org/doi/10.1103/PhysRevE.80.031602
DOI:
10.1103/PhysRevE.80.031602
PACS:
81.10.−h, 61.50.Ah, 61.72.Bb, 61.72.Mm