论文标题
水相图的量子力学探索
Quantum-mechanical exploration of the phase diagram of water
论文作者
论文摘要
水的相图包含许多谜团:某些相边界是模糊的,并且已知稳定相的集合可能不完整。从液态水和一组全面的50个冰结构开始,我们以三个混合密度功能理论的近似水平计算相图,考虑了热和核波动以及质子疾病。这样的计算仅是可以进行处理的,因为我们结合了机器学习方法和先进的自由能技术。计算出的相图与实验有定性一致,尤其是在压力$ \ Lessim $ 8000 bar,化学势的差异与质子障碍引入的微妙不确定性以及三个混合功能之间的扩散相当。在我们的计算中,所考虑的假设冰阶段都没有热力学稳定,这表明所考虑的区域中实验水相图的完整性。我们的工作证明了从第一原理预测多态系统的相图的可行性,并提供了测试量子力学计算极限的热力学方法。
The phase diagram of water harbours many mysteries: some of the phase boundaries are fuzzy, and the set of known stable phases may not be complete. Starting from liquid water and a comprehensive set of 50 ice structures, we compute the phase diagram at three hybrid density-functional-theory levels of approximation, accounting for thermal and nuclear fluctuations as well as proton disorder. Such calculations are only made tractable because we combine machine-learning methods and advanced free-energy techniques. The computed phase diagram is in qualitative agreement with experiment, particularly at pressures $\lesssim$8000 bar, and the discrepancy in chemical potential is comparable with the subtle uncertainties introduced by proton disorder and the spread between the three hybrid functionals. None of the hypothetical ice phases considered is thermodynamically stable in our calculations, suggesting the completeness of the experimental water phase diagram in the region considered. Our work demonstrates the feasibility of predicting the phase diagram of a polymorphic system from first principles and provides a thermodynamic way of testing the limits of quantum-mechanical calculations.