Cite this article:
Yang Gui, Tu Bi-Hong, Li Guo-Hui, Zhao Hong-Wei, Zhou Shi-Ping. Radiation-induced resistance oscillation and instability in GaAS/AlGaAS heterostructure under transverse magnetic fieldsJ. Chin. Phys. B, 2008, 17(6): 2010-2017.
| Yang Gui, Tu Bi-Hong, Li Guo-Hui, Zhao Hong-Wei, Zhou Shi-Ping. Radiation-induced resistance oscillation and instability in GaAS/AlGaAS heterostructure under transverse magnetic fieldsJ. Chin. Phys. B, 2008, 17(6): 2010-2017. |
Radiation-induced resistance oscillation and instability in GaAS/AlGaAS heterostructure under transverse magnetic fields
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Abstract
This paper studies dynamics of a modulation-doped GaAs/AlGaAs heterostructure under transverse magnetic fields and microwave radiations. It finds that negative differential conductivity, due to the real-space electron transfer and delayed dielectric relaxation of the interface potential barrier, can lead to complex behaviours when a relatively small magnetic field is applied. Quasiperiodicity, frequency-locking and the routes from period-doubling to chaos are found. Under a large magnetic field, however, two time-independent homogeneous steady states exist; and the longitudinal resistance of the system shows an interesting oscillation with period tuned by the ratio of microwave radiation frequency \omega to the cyclotron frequency \omega_\rm c and local minima at \omega/\omega_\rm c=\rm integer+1/4. -
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