中国物理B ›› 2022, Vol. 31 ›› Issue (10): 107201-107201.doi: 10.1088/1674-1056/ac6866
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Yanbang Chu(褚衍邦)1,2, Le Liu(刘乐)1,2, Yiru Ji(季怡汝)1,2, Jinpeng Tian(田金朋)1,2, Fanfan Wu(吴帆帆)1,2, Jian Tang(汤建)1,2, Yalong Yuan(袁亚龙)1,2, Yanchong Zhao(赵岩翀)1,2, Xiaozhou Zan(昝晓州)1,2, Rong Yang(杨蓉)1,3, Kenji Watanabe4, Takashi Taniguchi5, Dongxia Shi(时东霞)1,2,3,†, Wei Yang(杨威)1,2,3, and Guangyu Zhang(张广宇)1,2,3,‡
Yanbang Chu(褚衍邦)1,2, Le Liu(刘乐)1,2, Yiru Ji(季怡汝)1,2, Jinpeng Tian(田金朋)1,2, Fanfan Wu(吴帆帆)1,2, Jian Tang(汤建)1,2, Yalong Yuan(袁亚龙)1,2, Yanchong Zhao(赵岩翀)1,2, Xiaozhou Zan(昝晓州)1,2, Rong Yang(杨蓉)1,3, Kenji Watanabe4, Takashi Taniguchi5, Dongxia Shi(时东霞)1,2,3,†, Wei Yang(杨威)1,2,3, and Guangyu Zhang(张广宇)1,2,3,‡
摘要: Magnetoresistance ({MR}) provides rich information about Fermi surface, carrier scatterings, and exotic phases for a given electronic system. Here, we report a study of the magnetoresistance for the metallic states in twisted double bilayer graphene (TDBG). We observe quadratic magnetoresistance in both Moiré valence band (VB) and Moiré conduction band (CB). The scaling analysis shows validity of Kohler's rule in the Moiré valence band. On the other hand, the quadratic magnetoresistance appears near the halo structure in the Moiré conduction band, and it violates Kohler's rule, demonstrating the {MR} scaling related to band structure in TDBG. We also propose an alternative scaling near the halo structure. Further analysis implies that the observed quadratic magnetoresistance and alternative scaling in conduction band are related to the halo boundary. Our results may inspire investigation on {MR} in twisted 2D materials and provide new knowledge for {MR} study in condensed matter physics.
中图分类号: (Magnetoresistance)