Evolution of Dopant-Concentration-Induced Magnetic Exchange Interaction in Topological Insulator Thin Films
Fei Wang, Yi-Fan Zhao, Zijie Yan, Hemian Yi, Wei Yuan, Lingjie Zhou, Weiwei Zhao, Moses H. W. Chan, and Cui-Zu Chang

TL;DR
This study investigates how varying dopant concentrations in V- and Cr-doped Bi2Te3 thin films influence magnetic exchange interactions and electronic properties, revealing a transition from van Vleck to RKKY ferromagnetism.
Contribution
It demonstrates the evolution of magnetic exchange interactions with dopant concentration in magnetic topological insulator thin films, combining synthesis, magneto-transport, and ARPES measurements.
Findings
Curie temperature peaks at a critical dopant concentration.
Doping shifts chemical potential towards charge neutrality.
Dopant concentration induces a transition from nontrivial to trivial topological phase.
Abstract
Two essential ingredients for the quantum anomalous Hall (QAH) effect, i.e. topological and magnetic orders, can be combined by doping magnetic ions into a topological insulator (TI) film. Through this approach, the QAH effect has been realized in chromium (Cr)- and/or vanadium (V)-doped TI (Bi,Sb)2Te3 thin films. In this work, we synthesize both V- and Cr-doped Bi2Te3 thin films with controlled dopant concentration using molecular beam epitaxy (MBE). By performing magneto-transport measurements, we find that both systems show an unusual but yet similar ferromagnetic response with respect to magnetic dopant concentration, specifically the Curie temperature does not increase monotonically but shows a local maximum at a critical dopant concentration. Our angle-resolved photoemission spectroscopy (ARPES) measurements show that the Cr/V doping introduces hole carriers into Bi2Te3, which…
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