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September 5, 2025Physical review. B./Physical review. B0 citations

Interlayer exchange coupling induced critical-metal-to-insulator phase transition in quantum anomalous Hall insulators

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RZRuoxi ZhangYZYi‐Fan ZhaoLZLing‐Jie Zhou

Key Points

  • The study reveals a critical-metal-to-insulator phase transition induced by interlayer exchange coupling.
  • Thinner quantum anomalous Hall samples show nearly temperature-independent longitudinal resistance, while thicker samples behave as insulators.
  • Molecular beam epitaxy synthesis was employed to create magnetic topological insulator sandwiches with varying spacer layer thicknesses.
  • Understanding the observed transition helps clarify interlayer exchange coupling's influence on magnetic layer behavior.

Abstract

Interlayer exchange coupling (IEC) between two magnetic layers sandwiched by a nonmagnetic spacer layer plays a critical role in shaping the magnetic properties of such heterostructures. The quantum anomalous Hall (QAH) effect has been realized in a structure composed of two magnetically doped topological insulator (TI) layers separated by an undoped TI layer. In this work, we employ molecular beam epitaxy to synthesize a series of magnetic TI sandwiches with varying thicknesses of the middle undoped TI spacer layer. The well-quantized QAH effect is observed in all these samples, and the IEC modulates its critical behavior between the top and bottom magnetic TI layers. Near the plateau phase transition (PPT), thinner QAH samples exhibit a two-dimensional critical metal behavior with nearly temperature-independent longitudinal resistance. In contrast, thicker QAH samples behave as a three-dimensional insulator with reduced longitudinal resistance at higher temperatures. We employ a magnetic TI Hamiltonian with random magnetic domains to understand the IEC-induced critical-metal-to-insulator transition observed near QAH PPT.

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Cite This Study

Zhang et al. (2025) studied this question.

synapsesocial.com/papers/68bb5f586d6d5674bcd03837https://doi.org/10.1103/6myc-8pr9
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