Quantum geometry quadrupole-induced third-order nonlinear transport in antiferromagnetic topological insulator MnBi2Te4
arXiv:2307.12313 · doi:10.1038/s41467-024-52206-8
Abstract
The study of quantum geometry effects in materials has been one of the most important research directions in recent decades. The quantum geometry of a material is characterized by the quantum geometry tensor of the Bloch states. The imaginary part of the quantum geometry tensor gives rise to the Berry curvature while the real part gives rise to the quantum metric. While Berry curvature has been well studied in the past decades, the experimental investigation on the quantum metric effects is only at its infancy stage. In this work, we measure the nonlinear transport of bulk MnBiTe, which is a topological anti-ferromagnet. We found that the second order nonlinear responses are negligible as required by inversion symmetry, the third-order nonlinear responses are finite. The measured third-harmonic longitudinal () and transverse () voltages with frequency 3w, driven by an a.c. current with frequency w, show an intimate connection with magnetic transitions of MnBiTe flakes. Their magnitudes change abruptly as MnBiTe flakes go through magnetic transitions from an AFM state to a canted AFM state and to a FM state. In addition, the measured is an even function of the applied magnetic field B while is odd in B. Amazingly, the field dependence of the third-order responses as a function of the magnetic field suggests that is induced by quantum metric quadrupole and is induced by Berry curvature quadrupole. Therefore, the quadrupoles of both the real and the imaginary part of the quantum geometry tensor of bulk MnBiTe are revealed through the third order nonlinear transport measurements. This work greatly advanced our understanding on the connections between the higher order moments of quantum geometry and nonlinear transport.
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Cited by in corpus (13)
- Non-linear Transport in Non-centrosymmetric Systems: From Fundamentals to Applications
- Intrinsic magnetic topological insulators of the MnBiTe family
- Equivalence of semiclassical and response theories for second-order nonlinear ac Hall effects
- Anomalous geometric transport signatures of topological Euler class
- Nonlinear Seebeck effect in NiFe|Pt at room temperature
- The "Sign problem" of the 3rd order anomalous Hall effect in topological magnetic materials
- Giant Room-Temperature Third-Order Electrical Transport in a Thin-Film Altermagnet Candidate
- Reconstructing the wavefunction of magnetic topological insulators MnBi2Te4 and MnBi4Te7 using spin-resolved photoemission
- Band Geometry Induced Third-Harmonic Generation
- Resonantly enhanced photoemission from topological surface states in MnBiTe
- Identifying geometric third-order nonlinear transport in disordered materials
- Quantum geometric map of magnetotransport
- Disorder-mediated linear and nonlinear magnetotransport in the charge-density-wave material