Microwave-resonance-induced magnetooscillations and vanishing resistance states in multisubband two-dimensional electron systems
arXiv:1104.0875 · doi:10.1063/1.3652923
Abstract
The dc magnetoconductivity of the multisubband two-dimensional electron system formed on the liquid helium surface in the presence of resonant microwave irradiation is described, and a new mechanism of the negative linear response conductivity is studied using the self-consistent Born approximation. Two kinds of scatterers (vapor atoms and capillary wave quanta) are considered. Besides a conductivity modulation expected near the points, where the excitation frequency for inter-subband transitions is commensurate with the cyclotron frequency, a sign-changing correction to the linear conductivity is shown to appear for usual quasi-elastic inter-subband scattering, if the collision broadening of Landau levels is much smaller than thermal energy. The decay heating of the electron system near the commensurability points leads to magnetooscillations of electron temperature, which are shown to increase the importance of the sign-changing correction. The line shape of magnetoconductivity oscillations calculated for wide ranges of temperature and magnetic field is in a good accordance with experimental observations.
13 pages, 8 figures
References in corpus (4)
- Theory of microwave-induced oscillations in the magnetoconductivity of a 2D electron gas
- Novel Radiation-induced Magnetoresistance Oscillations in a Nondegenerate 2DES on Liquid Helium
- Photon-induced vanishing of magnetoconductance in 2D electrons on liquid He
- Microwave-induced magnetooscillations and absolute negative conductivity in the multisubband two-dimensional electron system on liquid helium
Cited by in corpus (14)
- Nonequilibrium phenomena in high Landau levels
- An incompressible state of a photo-excited electron gas
- Resonant Photovoltaic Effect in Surface-State Electrons on Liquid Helium
- Photo-Conductivity Response at Cyclotron-Resonance Harmonics in a Non-Degenerate 2D Electron Gas on Liquid Helium
- Coulombic effects on magnetoconductivity oscillations induced by microwave excitation in multisubband two-dimensional electron systems
- Coupling between Rydberg states and Landau levels of electrons trapped on liquid helium
- Density domains of a photo-excited electron gas on liquid helium
- Magneto-oscillations and anomalous current states in a photo-excited electron gas on liquid helium
- Photon-assisted scattering and magnetoconductivity oscillations in a strongly correlated 2D electron system formed on the surface of liquid helium
- Cyclotron-resonance-induced negative dc conductivity in a two-dimensional electron system on liquid helium
- Coupled pair of one and two dimensional magneto-plasmons on electrons on helium
- The fine structure of microwave-induced magneto-oscillations in photoconductivity of the two-dimensional electron system formed on a liquid-helium surface
- Magnetoconductivity oscillations induced by intersubband excitation in a degenerate 2D electron gas
- Surface photocurrent in electron gas over liquid He subject to quantizing magnetic field