arXiv · cond-mat/0605521
Radiation-induced magnetoresistance oscillations in two-dimensional electron systems under bichromatic irradiation
Abstract
We analyze the magnetoresistance $R_{xx}$ oscillations in high-mobility two-dimensional electron systems induced by the combined driving of two radiation fields of frequency $ω_1$ and $ω_2$, based on the balance-equation approach to magnetotransport for high-carrier-density systems in Faraday geometry. It is shown that under bichromatic irradiation of $ω_2\sim 1.5 ω_1$, most of the characterstic peak-valley pairs in the curve of $R_{xx}$ versus magnetic field in the case of monochromatic irradiation of either $ω_1$ or $ω_2$ disappear, except the one around $ω_1/ω_c\sim 2$ or $ω_2/ω_c\sim 3$. $R_{xx}$ oscillations show up mainly as new peak-valley structures around other positions related to multiple photon processes of mixing frequencies $ω_1+ω_2$, $ω_2-ω_1$, etc. Many minima of these resistance peak-valley pairs can descend down to negative with enhancing radiation strength, indicating the possible bichromaticzero-resistance states.
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X. L. Lei. 2006-05-22. Radiation-induced magnetoresistance oscillations in two-dimensional electron systems under bichromatic irradiation. https://doi.org/10.1103/physrevb.73.235322
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