论文标题

部分可观测时空混沌系统的无模型预测

Orbital-selective Mott phase and spin nematicity in Ni-substituted FeTe$_{0.65}$Se$_{0.35}$ single crystals

论文作者

Cieplak, Marta Z., Zajcewa, I., Lynnyk, A., Kosyl, K. M., Gawryluk, D. J.

论文摘要

铁葡萄糖生成剂的正常状态是金属的,但高度不寻常,根据温度的不同,轨道和自旋程度部分巡回或局部化,导致许多异常特征。在这项工作中,我们报告了两个此类特征的观察结果,即轨道选择性Mott阶段(OSMP)和自旋列性,在磁化和磁通转运方面证明了[电阻率,霍尔效应,各向异性磁势率(AMR)of Fe $ _ {1-y Yi $ _ $ _ $ _ $ _ $ _ $ _ $ _ $ _ $ _ $ _ $ _ $ _ $ _ $ _ $ _}0.655555555555555555555555555555555555555。单晶,$ 0 <y <0.21 $。用电子替换Ni Dopes晶体,这消除了Fermi级别的某些孔口袋,仅留下一个,起源于$ d_ {xy} $ orbital。这会导致$ y \ gtrsim 0.06 $以低$ t $以电子为主的传导。但是,在高温下,$ t \ gtrsim 125÷178 $ k,传导逆转为孔为主。在接近电子主导区域的高$ t $边界的温度下观察到磁化和电阻率的异常。对这些效果的分析表明,与OSMP阶段的Brillouin区域X点的$ d_ {z^2} $孔口袋的外观有联系,这是通过$ d_ {xy} $ orbital的定位,正如最近由Angloved Floged Photomsissions($ \ \ textit fextit {$ \ textit {j.huang and y。低$ t $ AMR显示出4倍和2倍2倍的旋转对称性,其平面磁晶型各向异性各向异性,其最大的4倍,小$ y $,在中间$ y $中被压制。这些结果与小$ $ $的混合条纹/双侧磁相关性以及中间$ y $的条纹相关性的抑制作用一致,这表明随着NI掺杂的增加,自旋nematicition的发展,这可能有助于抑制超导性。

The normal state in iron chalcogenides is metallic but highly unusual, with orbital and spin degrees of freedom partially itinerant or localized depending on temperature, leading to many unusual features. In this work, we report on the observations of two of such features, the orbital selective Mott phase (OSMP) and spin nematicity, evidenced in magnetization and magnetotransport [resistivity, Hall effect, anisotropic magnetoresistance (AMR)] of Fe$_{1-y}$Ni$_y$Te$_{0.65}$Se$_{0.35}$ single crystals, with $0 < y < 0.21$. Substitution of Ni dopes crystals with electrons, what eliminates some of the hole pockets from Fermi level, leaving only one, originating from $d_{xy}$ orbital. This leads to electron-dominated conduction at low $T$ for $y \gtrsim 0.06$. However, at high temperatures, $T \gtrsim 125 ÷178$ K, the conduction reverses to hole-dominated. Anomalies in magnetization and resistivity are observed at temperatures which approach high-$T$ boundary of the electron-dominated region. Analysis of these effects suggests a link with the appearance of the $d_{z^2}$ hole pockets at X points of the Brillouin zone in the OSMP phase, facilitated by the localization of $d_{xy}$ orbital, as recently reported by angular resolved photoemission experiments ($\textit{J. Huang et al., Commun. Phys. 5, 29 (2022)}$). The low-$T$ AMR shows mixed 4-fold and 2-fold rotational symmetry of in-plane magnetocrystalline anisotropy, with the 4-fold term the largest at small $y$, and suppressed at intermediate $y$. These results are consistent with the mixed stripe/bicollinear magnetic correlations at small $y$, and suppression of stripe correlations at intermediate $y$, indicating development of spin nematicity with increasing Ni doping, which possibly contributes to the suppression of superconductivity.

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