Published February 22, 2022 | Version v1

Beatings of ratchet current magneto-oscillations in GaN-based grating gate structures: Manifestation of spin-orbit band splitting

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Sai, P., Potashin, S. O., Szoła, M., Yavorskiy, D., Cywiński, G., Prystawko, P., ... & Kachorovskii, V. Y. (2021). Beatings of ratchet current magneto-oscillations in GaN-based grating gate structures: Manifestation of spin-orbit band splitting. Physical Review B, 104(4), 045301 [arXiv:2102.12791].

Abstract: We report on the study of the magnetic ratchet effect in AlGaN/GaN heterostructures superimposed with a lateral superlattice formed by a dual-grating gate structure. We demonstrate that irradiation of the superlattice with a terahertz beam results in the direct ratchet current, which shows giant magneto-oscillations in the regime of Shubnikov–de Haas oscillations. The oscillations have the same period and are in phase with the resistivity oscillations. Remarkably, their amplitude is greatly enhanced as compared with the ratchet current at zero magnetic field, and the envelope of these oscillations exhibits large beatings as a function of the magnetic field. We demonstrate that the beatings are caused by the spin-orbit (SO) splitting of the conduction band. We develop a theory which gives a good qualitative explanation of all experimental observations and allows us to extract the SO splitting constant αSO=7.5±1.5 meVÅ. We also discuss how our results are modified by plasmonic effects and show that these effects become more pronounced with decreasing the period of the grating gate structures down to submicrons.

Notes

The financial support of the IRAP Programme of the Foundation for Polish Science (Grant No. MAB/2018/9, Project CENTERA) is gratefully acknowledged. The partial support by the National Science Centre, Poland, allocated on the basis of Grants No. 2016/22/E/ST7/00526, No. 2019/35/N/ST7/00203, and NCBIR No. WPC/20/DefeGaN/2018 is acknowledged. S.D.G. thanks the DFG-RFBR project (No. Ga501/18-1 and No. 21-52-12015) and Volkswagen Stiftung Cooperation Program (97738). The work of S.P. and V.K. was funded by RFBR, Projects No. 20-02-00490 and No. 21-52-12015, and by Foundation for the Advancement of Theoretical Physics and Mathematics.

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Journal article: 10.1103/PhysRevB.104.045301 (DOI)
Preprint: arXiv:2102.12791 (arXiv)