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钴团簇修饰的BiSbTeSe纳米器件中的反常量子化轨迹和宇称反常

Anomalous quantization trajectory and parity anomaly in Co cluster decorated BiSbTeSe nanodevices.

作者信息

Zhang Shuai, Pi Li, Wang Rui, Yu Geliang, Pan Xing-Chen, Wei Zhongxia, Zhang Jinglei, Xi Chuanying, Bai Zhanbin, Fei Fucong, Wang Mingyu, Liao Jian, Li Yongqing, Wang Xuefeng, Song Fengqi, Zhang Yuheng, Wang Baigeng, Xing Dingyu, Wang Guanghou

机构信息

National Laboratory of Solid State Microstructures, College of Physics and Collaborative Innovation Center of Advanced Microstructures, Nanjing University, Nanjing, 210093, China.

Hefei National Laboratory for Physical Sciences at Microscale, University of Science and Technology of China, Hefei, 230026, China.

出版信息

Nat Commun. 2017 Oct 17;8(1):977. doi: 10.1038/s41467-017-01065-7.

Abstract

Dirac Fermions with different helicities exist on the top and bottom surfaces of topological insulators, offering a rare opportunity to break the degeneracy protected by the no-go theorem. Through the application of Co clusters, quantum Hall plateaus were modulated for the topological insulator BiSbTeSe, allowing an optimized surface transport. Here, using renormalization group flow diagrams, we show the extraction of two sets of converging points in the conductivity tensor space, revealing that the top surface exhibits an anomalous quantization trajectory, while the bottom surface retains the 1/2 quantization. Co clusters are believed to induce a sizeable Zeeman gap ( > 4.8 meV) through antiferromagnetic exchange coupling, which delays the Landau level hybridization on the top surface for a moderate magnetic field. A quasi-half-integer plateau also appears at -7.2 Tesla. This allows us to study the interesting physics of parity anomaly, and paves the way for further studies simulating exotic particles in condensed matter physics.The topological surface states usually appear in pairs in a topological insulator, with one on the top surface and the other on the bottom surface. Here, Zhang et al. utilize Co cluster to induce a Zeeman gap on one surface through antiferromagnetic exchange coupling, and observe a quasi-half-integer plateau, suggesting the parity anomaly of Dirac fermions.

摘要

具有不同螺旋性的狄拉克费米子存在于拓扑绝缘体的顶面和底面,这为打破禁戒定理所保护的简并性提供了难得的机会。通过应用钴团簇,对拓扑绝缘体BiSbTeSe的量子霍尔平台进行了调制,从而实现了优化的表面输运。在此,我们利用重整化群流图,展示了在电导率张量空间中两组收敛点的提取,揭示出顶面呈现出反常量子化轨迹,而底面则保持1/2量子化。据信钴团簇通过反铁磁交换耦合诱导出相当大的塞曼能隙(>4.8 meV),这在中等磁场下延迟了顶面的朗道能级杂化。在-7.2特斯拉时还出现了一个准半整数平台。这使我们能够研究宇称反常的有趣物理现象,并为在凝聚态物理中模拟奇异粒子的进一步研究铺平道路。拓扑表面态通常在拓扑绝缘体中以对的形式出现,一个在顶面,另一个在底面。在此,张等人利用钴团簇通过反铁磁交换耦合在一个表面上诱导出塞曼能隙,并观察到一个准半整数平台,这表明了狄拉克费米子的宇称反常。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/faed/5645337/6ac4cd036193/41467_2017_1065_Fig1_HTML.jpg

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