论文标题

Aflow ++:自动材料设计的C ++框架

aflow++: a C++ framework for autonomous materials design

论文作者

Oses, C., Esters, M., Hicks, D., Divilov, S., Eckert, H., Friedrich, R., Mehl, M. J., Smolyanyuk, A., Campilongo, X., van de Walle, A., Schroers, J, Kusne, A. G., Takeuchi, I., Zurek, E., Nardelli, M. Buongiorno, Fornari, M., Lederer, Y., Levy, O., Toher, C., Curtarolo, S.

论文摘要

计算和自主材料设计给出的新技术机会的实现需要高效有效的框架。在过去的二十多年中,Aflow ++(材料发现的自动流量框架)提供了互连的算法和工作流程,以应对这一挑战。本文包含该软件及其一些最严重的功能的概述,包括算法细节,标准和示例。突出显示了关键推力:除了建模复杂材料(例如高渗透陶瓷和散装金属玻璃)之外,结构,电子,热力学和热机械性能的计算。 Aflow ++软件优先考虑互操作性,最大程度地减少了独立参数和公差的数量。它确保了跨财产集的结果的一致性 - 促进机器学习研究。该软件还具有各种验证方案,为以高通量方式生成的数据提供了实时质量保证。总之,这些考虑因素有助于开发大型可靠的材料数据库,这些数据库最终可以提供未来的材料系统

The realization of novel technological opportunities given by computational and autonomous materials design requires efficient and effective frameworks. For more than two decades, aflow++ (Automatic-Flow Framework for Materials Discovery) has provided an interconnected collection of algorithms and workflows to address this challenge. This article contains an overview of the software and some of its most heavily-used functionalities, including algorithmic details, standards, and examples. Key thrusts are highlighted: the calculation of structural, electronic, thermodynamic, and thermomechanical properties in addition to the modeling of complex materials, such as high-entropy ceramics and bulk metallic glasses. The aflow++ software prioritizes interoperability, minimizing the number of independent parameters and tolerances. It ensures consistency of results across property sets - facilitating machine learning studies. The software also features various validation schemes, offering real-time quality assurance for data generated in a high-throughput fashion. Altogether, these considerations contribute to the development of large and reliable materials databases that can ultimately deliver future materials systems

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