论文标题

使用高通量计算的锡生害虫问题作为密度功能的测试

The Tin Pest Problem as a Test of Density Functionals Using High-Throughput Calculations

论文作者

Mehl, Michael J., Ronquillo, Mateo, Hicks, David, Esters, Marco, Oses, Corey, Friedrich, Rico, Smolyanyuk, Andriy, Gossett, Eric, Finkenstadt, Daniel, Curtarolo, Stefano

论文摘要

在环境下,锡从其地面半金属$α$ -SN(钻石结构)相变成了紧凑的金属$β$ -SN相,在13 $^\ Circ $ c(286K)时。可能会进一步过渡到450k以上的简单六角形$γ$ -SN。这些相对较低的过渡温度是由于结构之间的能量差异很小,$ \ \ 20 $ \,MEV/ATOM在$α$ - 和$β$ -SN之间。这使TIN成为密度功能和计算方法准确性的异常敏感测试。在这里,我们使用高通量自动流(Aflow)方法来研究使用多种密度函数在多种结构中的TIN的能量。我们查看每个功能的成功和缺陷。由于没有功能是完全令人满意的,因此我们看起来像Hubbard U更正,并表明可以选择库仑相互作用以预测正确的相变温度。我们还讨论了测试具有较小能量差异的系统收敛的高通量计算的必要性。

At ambient pressure tin transforms from its ground-state semi-metal $α$-Sn (diamond structure) phase to the compact metallic $β$-Sn phase at 13$^\circ$C (286K). There may be a further transition to the simple hexagonal $γ$-Sn above 450K. These relatively low transition temperatures are due to the small energy differences between the structures, $\approx 20$\,meV/atom between $α$- and $β$-Sn. This makes tin an exceptionally sensitive test of the accuracy of density functionals and computational methods. Here we use the high-throughput Automatic-FLOW (AFLOW) method to study the energetics of tin in multiple structures using a variety of density functionals. We look at the successes and deficiencies of each functional. As no functional is completely satisfactory, we look Hubbard U corrections and show that the Coulomb interaction can be chosen to predict the correct phase transition temperature. We also discuss the necessity of testing high-throughput calculations for convergence for systems with small energy differences.

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