Tazai Rina, Yamakawa Youichi, Kontani Hiroshi
Yukawa Institute for Theoretical Physics, Kyoto University, Kyoto 606-8502, Japan.
Department of Physics, Nagoya University, Nagoya 464-8602, Japan.
Proc Natl Acad Sci U S A. 2024 Jan 16;121(3):e2303476121. doi: 10.1073/pnas.2303476121. Epub 2024 Jan 11.
In kagome metals, the chiral current order parameter [Formula: see text] with time-reversal-symmetry-breaking is the source of various exotic electronic states, while the method of controlling the current order and its interplay with the star-of-David bond order [Formula: see text] are still unsolved. Here, we reveal that tiny uniform orbital magnetization [Formula: see text] is induced by the chiral current order, and its magnitude is prominently enlarged under the presence of the bond order. Importantly, we derive the magnetic-field ([Formula: see text])-induced Ginzburg-Landau (GL) free energy expression [Formula: see text], which enables us to elucidate the field-induced current-bond phase transitions in kagome metals. The emergent current-bond-[Formula: see text] trilinear coupling term in the free energy, [Formula: see text], naturally explains the characteristic magnetic-field sensitive electronic states in kagome metals, such as the field-induced current order and the strong interplay between the bond and current orders. The GL coefficients of [Formula: see text] derived from the realistic multiorbital model are appropriate to explain various experiments. Furthermore, we discuss the field-induced loop current orders in the square lattice models that have been studied in cuprate superconductors.
在 Kagome 金属中,具有时间反演对称性破缺的手征电流序参量[公式:见原文]是各种奇异电子态的来源,而控制电流序的方法及其与大卫之星键序[公式:见原文]的相互作用仍未得到解决。在这里,我们揭示了微小的均匀轨道磁化强度[公式:见原文]是由手征电流序诱导产生的,并且在键序存在的情况下其大小会显著增大。重要的是,我们推导了磁场([公式:见原文])诱导的金兹堡 - 朗道(GL)自由能表达式[公式:见原文],这使我们能够阐明 Kagome 金属中场诱导的电流 - 键相变。自由能中出现的电流 - 键 - [公式:见原文]三线性耦合项[公式:见原文],自然地解释了 Kagome 金属中磁场敏感的特征电子态,例如场诱导的电流序以及键序和电流序之间的强相互作用。从实际多轨道模型推导得到的[公式:见原文]的 GL 系数适合解释各种实验。此外,我们还讨论了在铜酸盐超导体中研究的正方晶格模型中的场诱导环流序。