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Demonstration of high sensitivity of microwave-induced resistance oscillations to circular polarization

M. L. Savchenko1,2, A. Shuvaev1, I. A. Dmitriev3, S. D. Ganichev3, Z. D. Kvon2,4, and A. Pimenov1

  • 1Institute of Solid State Physics, Vienna University of Technology, 1040 Vienna, Austria
  • 2Rzhanov Institute of Semiconductor Physics, 630090 Novosibirsk, Russia
  • 3Terahertz Center, University of Regensburg, 93040 Regensburg, Germany
  • 4Novosibirsk State University, 630090 Novosibirsk, Russia

Phys. Rev. B 106, L161408 – Published 14 October, 2022

DOI: https://doi.org/10.1103/PhysRevB.106.L161408

Abstract

We demonstrate that the long-debated immunity of the microwave-induced resistance oscillations (MIRO) to the sense of circular polarization is in fact not an inherent property of this phenomenon in solid-state two-dimensional electron systems (2DES): We detect an up to 30 times larger MIRO signal for the cyclotron resonance (CR) active helicity, fully consistent with the concurrently measured transmission and the deduced CR shape of the Drude absorption. Using a 2DES as a sensitive sensor of the actual polarization state, we further study extrinsic near-field effects capable of producing an apparent immunity of the photoresponse.

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See Also

Circular polarization immunity of the cyclotron resonance photoconductivity in two-dimensional electron systems

E. Mönch, P. Euringer, G.-M. Hüttner, I. A. Dmitriev, D. Schuh, M. Marocko, J. Eroms, D. Bougeard, D. Weiss, and S. D. Ganichev
Phys. Rev. B 106, L161409 (2022)

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