Published September 2002 | public
Journal Article Open

Self-driven lattice-model Monte Carlo simulations of alloy thermodynamic properties and phase diagrams

An error occurred while generating the citation.

Abstract

Monte Carlo (MC) simulations of lattice models are a widely used way to compute thermodynamic properties of substitutional alloys. A limitation to their more widespread use is the difficulty of driving a MC simulation in order to obtain the desired quantities. To address this problem, we have devised a variety of high-level algorithms that serve as an interface between the user and a traditional MC code. The user specifies the goals sought in a high-level form that our algorithms convert into elementary tasks to be performed by a standard MC code. For instance, our algorithms permit the determination of the free energy of an alloy phase over its entire region of stability within a specified accuracy, without requiring any user intervention during the calculations. Our algorithms also enable the direct determination of composition-temperature phase boundaries without requiring the calculation of the whole free energy surface of the alloy system.

Additional Information

Copyright © Institute of Physics and IOP Publishing Limited 2002. Received 10 June 2002. Published 25 July 2002. Print publication: Issue 5 (September 2002) This work was supported by the NSF under program DMR-0080766.

Files

WALmsmse02.pdf
Files (717.7 kB)
Name Size Download all
md5:3e0f5033d2040648ddc1d5d1b4d63f2c
717.7 kB Preview Download

Additional details

Created:
August 21, 2023
Modified:
October 16, 2023