Phase study of oscillatory resistances in microwave-irradiated- and dark- GaAs/AlGaAs devices: Indications of a new class of integral quantum Hall effect
arXiv:0906.0032 · doi:10.1103/PhysRevB.79.205320
Abstract
We report the experimental results from a dark study and a photo-excited study of the high mobility GaAs/AlGaAs system at large filling factors, . At large-, the dark study indicates several distinct phase relations ("Type-1", "Type-2", and "Type-3") between the oscillatory diagonal- and Hall- resistances, as the canonical Integral Quantum Hall Effect (IQHE) is manifested in the "Type-1" case of approximately orthogonal diagonal- and Hall resistance- oscillations. Surprisingly, the investigation indicates quantum Hall plateaus also in the "Type-3" case characterized by approximately "anti-phase" Hall- and diagonal- resistance oscillations, suggesting a new class of IQHE. Transport studies under microwave photo-excitation exhibit radiation-induced magneto-resistance oscillations in both the diagonal, , and off-diagonal, , resistances. Further, when the radiation-induced magneto-resistance oscillations extend into the quantum Hall regime, there occurs a radiation-induced non-monotonic variation in the amplitude of Shubnikov-de Haas (SdH) oscillations in \textit{vs}. B, and a non-monotonic variation in the width of the quantum Hall plateaus in . The latter effect leads into the vanishing of IQHE at the minima of the radiation-induced oscillations with increased photo-excitation. We reason that the mechanism which is responsible for producing the non-monotonic variation in the amplitude of SdH oscillations in under photo-excitation is also responsible for eliminating, under photo-excitation, the novel "Type-3" IQHE in the high mobility specimen.
11 pages, 12 color figures
References in corpus (7)
- Theory of microwave-induced oscillations in the magnetoconductivity of a 2D electron gas
- Radiation-induced oscillatory magnetoresistance as a sensitive probe of the zero-field spin splitting in high mobility GaAs/AlGaAs devices
- Microwave photoconductivity of a 2D electron gas: Mechanisms and their interplay at high radiation power
- Radiation-induced magnetotransport in high-mobility two-dimensional systems: Role of electron heating
- Synchnonization, zero-resistance states and rotating Wigner crystal
- Spin characterization and control over the regime of radiation-induced zero-resistance states
- Fractional microwave-induced resistance oscillations