对《关于: kagome金属中虚电荷密度波的微观特征》的评论的回复
Reply to Comment on: Microscopic signatures of an imaginary charge density wave in a kagome metal
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中文总结 AI 辅助
该论文针对提出晶体镶嵌性可替代解释其研究中NMR光谱不对称的评论,论证该情景所需条件无法由普通晶体镶嵌性满足,故该解释不成立。
中文摘要 AI 辅助
我们回应了近期一项评论[I. Nikolov等人,arXiv:2608.13579(2026)],该评论提出晶体镶嵌性可作为我们研究[S. Suetsugu等人,Nat. Phys. 22,1251--1256(2026)]中报道的不对称核磁共振(NMR)光谱的替代解释。我们表明,该情景需要晶体取向的显著温度依赖和位置依赖分布,以及电场梯度(EFG)不对称参数的额外位置依赖分布,而这些均无法从普通晶体镶嵌性中得出。因此我们得出结论,晶体镶嵌性无法解释观测到的位置选择性光谱不对称,也不能为我们解释所依据的核心光谱观测提供替代解释。
英文摘要
We address a recent Comment [I. Nikolov {\it et al.}, arXiv:2608.13579 (2026)] proposing crystalline mosaicity as an alternative explanation for the asymmetric nuclear magnetic resonance (NMR) spectra reported in our study [S. Suetsugu {\it et al.}, Nat. Phys. {\bf 22}, 1251--1256 (2026)]. We show that this scenario requires substantial temperature- and site-dependent distributions of crystallographic orientations and additional site-dependent distributions of the electric field gradient (EFG) asymmetry parameter, none of which follow from ordinary crystalline mosaicity. We therefore conclude that crystalline mosaicity cannot account for the observed site-selective spectral asymmetry and does not provide an alternative explanation for the central spectroscopic observation underlying our interpretation.