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Tunable band topology and optical conductivity in altermagnets (2403.10509v2)

Published 15 Mar 2024 in cond-mat.str-el and cond-mat.mes-hall

Abstract: We study two-dimensional $d$-wave altermagnetic metals taking into account the presence of substrate-induced Rashba spin-orbit coupling. We consider the altermagnet bandstructure using a 2D band Hamiltonian near the $\Gamma$ point under external magnetic field. It is shown that time-reversal-symmetry breaking due to altermagnetism, together with Rashba coupling and external magnetic field, can result in non-trivial band topology. The topological phases can be tuned by magnetic field strength and directions, and are classified by their Chern numbers. Furthermore, we investigate the charge response by computing the full optical conductivity tensor with and without magnetic field. In particular, we focus on magneto-optical responses, which are the finite-frequency analog of the Berry curvature-induced anomalous Hall conductivity. Finally, using experimentally realistic parameters for RuO$_2$, we estimate the Faraday angle in the absence of magnetic fields.

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References (13)
  1. D. Xiao, M.-C. Chang, and Q. Niu, Berry phase effects on electronic properties, Reviews of modern physics 82, 1959 (2010).
  2. C.-Z. Chang, C.-X. Liu, and A. H. MacDonald, Colloquium: Quantum anomalous hall effect, Reviews of Modern Physics 95, 011002 (2023).
  3. G. Viola and D. P. DiVincenzo, Hall effect gyrators and circulators, Phys. Rev. X 4, 021019 (2014).
  4. S. Bosco, F. Haupt, and D. P. DiVincenzo, Self-impedance-matched hall-effect gyrators and circulators, Phys. Rev. Appl. 7, 024030 (2017).
  5. S. Hayami, Y. Yanagi, and H. Kusunose, Momentum-dependent spin splitting by collinear antiferromagnetic ordering, Journal of the Physical Society of Japan 88, 123702 (2019), https://doi.org/10.7566/JPSJ.88.123702 .
  6. L. Šmejkal, J. Sinova, and T. Jungwirth, Emerging research landscape of altermagnetism, Phys. Rev. X 12, 040501 (2022a).
  7. A. Corticelli, R. Moessner, and P. A. McClarty, Spin-space groups and magnon band topology, Physical Review B 105, 064430 (2022).
  8. L. Šmejkal, J. Sinova, and T. Jungwirth, Beyond conventional ferromagnetism and antiferromagnetism: A phase with nonrelativistic spin and crystal rotation symmetry, Phys. Rev. X 12, 031042 (2022b).
  9. I. Mazin (The PRX Editors), Editorial: Altermagnetism—a new punch line of fundamental magnetism, Phys. Rev. X 12, 040002 (2022).
  10. L. Attias, A. Levchenko, and M. Khodas, Intrinsic anomalous and crystal hall effects in altermagnets (2024), arXiv:2402.12115 [cond-mat.str-el] .
  11. The field magnitude required would depend on the strength of the easy-axis anisotropy.
  12. W.-K. Tse and A. H. MacDonald, Magneto-optical faraday and kerr effects in topological insulator films and in other layered quantized hall systems, Phys. Rev. B 84, 205327 (2011).
  13. V. A. Volkov and S. A. Mikhailov, Quantization of the faraday effect in systems with a quantum hall effect, JETP Lett. 41, 389 (1985).
Citations (5)
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