论文标题

kagome量子旋转液体候选物的多个长度尺度的位点特异性结构

Site-Specific Structure at Multiple Length Scales in Kagome Quantum Spin Liquid Candidates

论文作者

Smaha, Rebecca W., Boukahil, Idris, Titus, Charles J., Jiang, Jack Mingde, Sheckelton, John P., He, Wei, Wen, Jiajia, Vinson, John, Wang, Suyin Grass, Chen, Yu-Sheng, Teat, Simon J., Devereaux, Thomas P., Pemmaraju, C. Das, Lee, Young S.

论文摘要

在真实材料中实现量子自旋液体(QSL)基态是凝聚态物理学研究的主要问题。在这种追求中,至关重要的是完全表征缺陷的结构和影响,因为这些可能会显着影响脆弱的QSL物理。在这里,我们执行各种尖端的同步加速器X射线散射和光谱技术,并推进了用于位点特异性衍射和L边缘Zn吸收光谱的新方法。实验结果以及我们的第一原理计算解决了有关两个领先的Kagome QSL候选人的本地和远程结构的出色问题Cu $ _3 $ Zn(OH)$ _ 6 $ Cl $ _2 $。在所有长度尺度上,没有证据表明Zn取代了Kagome层,从而保留了Kagome晶格的QSL物理。我们的计算表明,与Herbertsmithite相比,在Zn-Barlowite中,反弥漫性疾病在Zn-Barlowite中的有利程度不高。 Zn-Barlowite的特定于位点特定的X射线衍射测量表明,与Herbertsmithite相反,Cu $^{2+} $和Zn $^{2+} $有选择地占据不同的室内层站点。使用第一个测量的Zn L边缘非弹性X射线吸收光谱与计算结合使用,我们发现了反转对称性的丧失在伪二十六感(Herbertsmithite)到三角形棱镜协调(Zn-Barlowite)与新峰的出现之间的系统相关性。总体而言,我们的测量值表明,锌 - 甲麦(Zn-Barlowite)比赫伯特史密斯(Herbertsmithite)具有结构上的优势,使其磁性更接近理想的QSL候选者:其Kagome层对非磁性缺陷具有高度抵抗力,而间层中层可以容纳更高量的Zn替代。

Realizing a quantum spin liquid (QSL) ground state in a real material is a leading issue in condensed matter physics research. In this pursuit, it is crucial to fully characterize the structure and influence of defects, as these can significantly affect the fragile QSL physics. Here, we perform a variety of cutting-edge synchrotron X-ray scattering and spectroscopy techniques, and we advance new methodologies for site-specific diffraction and L-edge Zn absorption spectroscopy. The experimental results along with our first-principles calculations address outstanding questions about the local and long-range structures of the two leading kagome QSL candidates, Zn-substituted barlowite Cu$_3$Zn$_{x}$Cu$_{1-x}$(OH)$_6$FBr and herbertsmithite Cu$_3$Zn(OH)$_6$Cl$_2$. On all length scales probed, there is no evidence that Zn substitutes onto the kagome layers, thereby preserving the QSL physics of the kagome lattice. Our calculations show that antisite disorder is not energetically favorable and is even less favorable in Zn-barlowite compared to herbertsmithite. Site-specific X-ray diffraction measurements of Zn-barlowite reveal that Cu$^{2+}$ and Zn$^{2+}$ selectively occupy distinct interlayer sites, in contrast to herbertsmithite. Using the first measured Zn L-edge inelastic X-ray absorption spectra combined with calculations, we discover a systematic correlation between the loss of inversion symmetry from pseudo-octahedral (herbertsmithite) to trigonal prismatic coordination (Zn-barlowite) with the emergence of a new peak. Overall, our measurements suggest that Zn-barlowite has structural advantages over herbertsmithite that make its magnetic properties closer to an ideal QSL candidate: its kagome layers are highly resistant to nonmagnetic defects while the interlayers can accommodate a higher amount of Zn substitution.

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