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Radiowave-Induced Resistance Oscillations

E. Bell1, A. Zhakenuly1, C. Hnatovsky2, K. W. Baldwin3, L. N. Pfeiffer3, K. W. West3, S. Studenikin2, and M. A. Zudov1,*

  • *Contact author: zudov001@umn.edu

Phys. Rev. Lett. 137, 146303 – Published 2 October, 2026

DOI: https://doi.org/10.1103/5h4n-1nzb

Abstract

Microwave-induced resistance oscillations (MIROs) occur when a two-dimensional electron gas is subjected to radiation of frequency ω=2πf and varying magnetic field B. MIROs are periodic in 1/B, with the period determined by the radiation frequency ω, and their amplitude scales with the radiation power. Stepping from single-photon transitions between Landau levels, MIROs are found on the low-field side of the cyclotron resonance, ωc≲ω, where ωc is the cyclotron frequency. Here, we report on another class of magneto resistance oscillations, which are induced by high-intensity radiation in the radio frequency range and occur at ωc≫ω. These oscillations are independent of frequency ω, they can be either 1/B or 1/B2 periodic, and their period is controlled by the radiation electric field. We further show that by using a displacement model in the limit of short-range (“sharp”) disorder we can extract the radiation field and the width of the cyclotron resonance.

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