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量子自旋链蓝铜矿(PbCuSO₄(OH)₂)的太赫兹振动动力学与密度泛函理论计算

Terahertz Vibrational Dynamics and DFT Calculations for the Quantum Spin Chain Linarite, PbCuSO(OH).

作者信息

Squires Andrew, Constable Evan, Horvat Joseph, Appadoo Dominique, Plathe Ruth, Lewis R A, Rule Kirrily C

机构信息

University of Wollongong, Wollongong, NSW 2522, Australia.

Commonwealth Scientific and Industrial Research Organisation (CSIRO), Lindfield, NSW 2070, Australia.

出版信息

J Phys Chem A. 2024 Mar 14;128(10):1767-1775. doi: 10.1021/acs.jpca.3c06926. Epub 2024 Feb 28.

Abstract

The low-dimensional quantum-magnet, linarite, PbCuS(OH), has been investigated using terahertz (THz) spectroscopy coupled with detailed density functional theory (DFT) calculations in order to explore the effects of the temperature on its lattice vibrations. Linarite is characterized by largely isolated CuO chains propagating along the crystallographic -axis, which at very low temperatures are responsible for exotic, quasi-1D magnetism in this material. To better understand the synergy between the structural bonds and lattice oscillations that contribute to these chains, polarized THz spectroscopic measurements were performed. Consolidating these results with detailed DFT calculations has revealed that the anisotropic vibrational motion for the THz modes is correlated with extreme motion associated with the crystallographic -axis. An unexpected feature observed in the infrared spectrum is attributed to subtle lattice distortions which break the centro-symmetry in linarite at high temperatures. This phenomenon has not previously been observed in linarite and likely results from anharmonicity in lattice oscillations.

摘要

为了探究温度对其晶格振动的影响,我们使用太赫兹(THz)光谱结合详细的密度泛函理论(DFT)计算,对低维量子磁体羟铜铅矿(PbCuS(OH))进行了研究。羟铜铅矿的特征是沿晶轴延伸的大量孤立的CuO链,在非常低的温度下,这些链导致了这种材料中奇异的准一维磁性。为了更好地理解构成这些链的结构键和晶格振动之间的协同作用,我们进行了偏振太赫兹光谱测量。将这些结果与详细的DFT计算相结合,揭示了太赫兹模式的各向异性振动运动与与晶轴相关的极端运动相关。在红外光谱中观察到的一个意外特征归因于高温下破坏羟铜铅矿中心对称性的细微晶格畸变。这种现象以前在羟铜铅矿中未被观察到,可能是由晶格振动的非谐性导致的。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/e7d5/10945475/0a1a83c4bef3/jp3c06926_0003.jpg

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