Transition of Electromechanical Pendulum into Nonlinear Response
ORAL
Abstract
We present measurements on a macroscopic electron shuttle in the regime of nonlinear response. The shuttle is formed by a classical mechanical pendulum situated between two capacitor plates. The main advantage of this macroscopic setup is that we can directly measure the onset of nonlinear response of this electromechanical pendulum exhibiting period doubling. The results will find use in application such as bifurcation amplifier in nanoscopic versions of the device. A model nanoelectromechanical device based on the macroscopic experiment has the potential to reveal nonlinear quantum mechanical effects.
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Authors
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Chulki Kim
Physics, University of Wisconsin-Madison
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Hua Qin
Electrical \& Computer Engineering, University of Wisconsin-Madison
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Hyun-Seok Kim
Electrical \& Computer Engineering, University of Wisconsin-Madison
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Robert Blick
Electrical \& Computer Engineering, University of Wisconsin-Madison, Department of Electrical and Computer Engineering, University of Wisconsin-Madison, WI 53706