论文标题

Kitaev量子磁铁中的新兴轨道磁化

Emergent orbital magnetization in Kitaev quantum magnets

论文作者

Banerjee, Saikat, Lin, Shi-Zeng

论文摘要

尽管许多测量值中有许多令人鼓舞的迹象,但对材料中Kitaev量子旋转液体(QSL)的明确鉴定仍然是一个巨大的挑战。为了促进Kitaev QSL的实验检测,我们在这里建议在托管QSL的Mott绝缘子中使用残留电荷响应来识别QSL的键标志。我们预测外部磁场中的基塔夫系统中的新兴轨道磁化。轨道磁化的方向可以通过旋转蜂窝平面中的外部磁场来翻转。轨道磁化强度通过对多型哈伯德 - 坎纳莫里汉密尔顿的详细显微镜分析明确证明,也得到了现象学的支持。我们首先根据自由度的自由度来得出局部电回电流操作员。此后,我们利用Majorana表示,我们估计手性Kitaev QSL状态基底状态的环电流,并获得随后的电流纹理,这些纹理负责造成新兴的轨道磁化。最后,我们讨论了可视化轨道磁化化的可能实验技术,该技术可以被视为基础激发的特征。

Unambiguous identification of the Kitaev quantum spin liquid (QSL) in materials remains a huge challenge despite many encouraging signs from various measurements. To facilitate the experimental detection of the Kitaev QSL, here we propose to use remnant charge response in Mott insulators hosting QSL to identify the key signatures of QSL. We predict an emergent orbital magnetization in a Kitaev system in an external magnetic field. The direction of the orbital magnetization can be flipped by rotating the external magnetic field in the honeycomb plane. The orbital magnetization is demonstrated explicitly through a detailed microscopic analysis of the multiorbital Hubbard-Kanamori Hamiltonian and also supported by a phenomenological picture. We first derive the localized electrical loop current operator in terms of the spin degrees of freedom. Thereafter, utilizing the Majorana representation, we estimate the loop currents in the ground state of the chiral Kitaev QSL state, and obtain the consequent current textures, which are responsible for the emergent orbital magnetization. Finally, we discuss the possible experimental techniques to visualize the orbital magnetization which can be considered as the signatures of the underlying excitations.

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