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Non-linear phenomena in electronic systems consisting of coupled single-electron oscillators

Author

Listed:
  • Kikombo, Andrew Kilinga
  • Hirose, Tetsuya
  • Asai, Tetsuya
  • Amemiya, Yoshihito

Abstract

This paper describes non-linear dynamics of electronic systems consisting of single-electron oscillators. A single-electron oscillator is a circuit made up of a tunneling junction and a resistor, and produces simple relaxation oscillation. Coupled with another, single electron oscillators exhibit complex behavior described by a combination of continuous differential equations and discrete difference equations. Computer simulation shows that a double-oscillator system consisting of two coupled oscillators produces multi-periodic oscillation with a single attractor, and that a quadruple-oscillator system consisting of four oscillators also produces multi-periodic oscillation but has a number of possible attractors and takes one of them determined by initial conditions.

Suggested Citation

  • Kikombo, Andrew Kilinga & Hirose, Tetsuya & Asai, Tetsuya & Amemiya, Yoshihito, 2008. "Non-linear phenomena in electronic systems consisting of coupled single-electron oscillators," Chaos, Solitons & Fractals, Elsevier, vol. 37(1), pages 100-107.
  • Handle: RePEc:eee:chsofr:v:37:y:2008:i:1:p:100-107
    DOI: 10.1016/j.chaos.2007.08.036
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