Abstract
Recently, it has been demonstrated that the Hexatic vortex fluid realized in 2-dimensional vortex state of a very weakly pinned amorphous MoGe thin film is extremely sensitive to external ac excitation. A large amplification of resistance is observed when the sample is exposed to external electromagnetic radiation or a small ac current is superimposed with the subcritical measuring dc current. The observed resistance strongly depends on both amplitude and frequency of the ac excitation. In this paper, we develop an inertial model of vortex lattice subjected to a small amplitude of ac current, by extending the flux creep theory. We show that the resistance increases exponentially with both amplitude and frequency of the ac current and explain quantitatively the variation of resistance with the amplitude and frequency of ac current using the presented model.
Published Version
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