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应用于强非谐卤化物钙钛矿的第一性原理声子准粒子理论

First-Principles Phonon Quasiparticle Theory Applied to a Strongly Anharmonic Halide Perovskite.

作者信息

Tadano Terumasa, Saidi Wissam A

机构信息

Research Center for Magnetic and Spintronic Materials, National Institute for Materials Science, Tsukuba 305-0047, Japan.

National Energy Technology Laboratory, United States Department of Energy, Pittsburgh, Pennsylvania 15236, USA and Department of Mechanical Engineering and Materials Science (MEMS), University of Pittsburgh, Pittsburgh, Pennsylvania 15261, USA.

出版信息

Phys Rev Lett. 2022 Oct 28;129(18):185901. doi: 10.1103/PhysRevLett.129.185901.

Abstract

Understanding and predicting lattice dynamics in strongly anharmonic crystals is one of the long-standing challenges in condensed matter physics. Here, we propose a first-principles method that gives accurate quasiparticle (QP) peaks of the phonon spectrum with strong anharmonic broadening. On top of the conventional first-order self-consistent phonon (SC1) dynamical matrix, the proposed method incorporates frequency renormalization effects by the bubble self-energy within the QP approximation. We apply the developed methodology to the strongly anharmonic α-CsPbBr_{3} that displays phonon instability within the harmonic approximation in the whole Brillouin zone. While the SC1 theory significantly underestimates the cubic-to-tetragonal phase transition temperature (T_{c}) by more than 50%, we show that our approach yields T_{c}=404-423  K, in excellent agreement with the experimental value of 403 K. We also demonstrate that an accurate determination of QP peaks is paramount for quantitative prediction and elucidation of the phonon linewidth.

摘要

理解和预测强非谐晶体中的晶格动力学是凝聚态物理中长期存在的挑战之一。在此,我们提出一种第一性原理方法,该方法能给出具有强非谐展宽的声子谱的精确准粒子(QP)峰。在所提出的方法中,除了传统的一阶自洽声子(SC1)动力学矩阵外,还在QP近似下通过泡利自能纳入了频率重整化效应。我们将所开发的方法应用于强非谐α-CsPbBr₃,该晶体在整个布里渊区的简谐近似下表现出声子不稳定性。虽然SC1理论将立方到四方的相变温度(Tc)显著低估了50%以上,但我们表明我们的方法得出Tc = 404 - 423 K,与403 K的实验值非常吻合。我们还证明,准确确定QP峰对于定量预测和声子线宽的阐明至关重要。

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