化学
光电导性
反铁磁性
凝聚态物理
范德瓦尔斯力
联轴节(管道)
理想(伦理)
量子
超导电性
订单(交换)
感应耦合
自旋(空气动力学)
铁磁性
基态
电子结构
渡线
物理
磁性结构
作者
Chen Li,Liu Ke,Dequan Jiang,En Chen,Yunshen Zhou,Jing Guo,Yonggang Wang
摘要
Low-dimensional van der Waals materials constitute fertile ground for exploring intertwined magnetism, transport, and optoelectronics, yet the structural provenance underlying the interplay among diverse quantum orders remains scarcely elucidated. Here, we report a rare case of simultaneous enhancement of magnetic order and photoconductivity in pressurized quasi-one-dimensional antiferromagnet MnSb 2 S 4 . Concomitant with a pressure-induced insulator-to-metal transition, MnSb 2 S 4 exhibits a collapse of magnetic order and dramatic positive-to-negative photoconductivity switching at ∼30 GPa. Notably, possible superconductivity emerges with further compression. Detailed structural analyses and theoretical calculations corroborate these anomalous behaviors and unravel sequential pressure-driven orbital and spin crossover of Mn 2+, accompanied by opposite evolutions of Jahn–Teller distortions in two inequivalent [MnS 6 ] octahedra. The intriguing electronic and structural evolutions establish MnSb 2 S 4 as a promising candidate for versatile device engineering and offer an ideal platform for deciphering intricate coupling among multiple degrees of freedom.
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