The Alloy Theoretic Automated Toolkit: A User Guide
Creators
Abstract
Although the formalism that allows the calculation of alloy thermodynamic properties from first-principles has been known for decades, its practical implementation has so far remained a tedious process. The Alloy Theoretic Automated Toolkit (ATAT) drastically simplifies this procedure by implementing decision rules based on formal statistical analysis that frees the researchers from a constant monitoring during the calculation process and automatically "glues" together the input and the output of various codes, in order to provide a high-level interface to the calculation of alloy thermodynamic properties from first-principles. ATAT implements the Structure Inversion Method (SIM), also known as the Connolly-Williams method, in combination with semi-grand-canonical Monte Carlo simulations. In order to make this powerful toolkit available to the wide community of researchers who could benefit from it, this article present a concise user guide outlining the steps required to obtain thermodynamic information from ab initio calculations.
Additional Information
© 2003 Elsevier Science Ltd. Received 31 August 2002; Available online 31 July 2003. This work was supported by the NSF under program DMR-0080766 and by the U.S. Department of Energy. Office of Basic Energy Sciences, under contract no. DE-F502-96ER 45571.Attached Files
Submitted - WALcalphj02preprint.pdf
Files
WALcalphj02preprint.pdf
Additional details
Identifiers
- Eprint ID
- 27534
- Resolver ID
- CaltechAUTHORS:20111031-151612355
Related works
- Describes
- https://arxiv.org/abs/cond-mat/0212159 (URL)
Funding
- NSF
- DMR-0080766
- Department of Energy (DOE) Office of Basic Energy Sciences
- DE-F502-96ER 45571
Dates
- Created
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2011-11-01Created from EPrint's datestamp field
- Updated
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2023-01-19Created from EPrint's last_modified field