We report the experimental verification of a simple threshold controller, which clips the chaos to periods of widely ranging orders, in a chaotic circuit. Then we use this to implement the fundamental NOR gate thus obtaining a proof of principle experiment demonstrating the universal computing capability of chaotic systems
This chapter discusses the problem of \u201cchaos generation\u201d, namely efficient techniques for ...
We propose a very simple implementation of a second-order nonautonomous chaotic oscillator, using a ...
Certain nonlinear systems can switch between dynamical attractors occupying different regions of pha...
We report the experimental realization of a simple threshold controller, which clips chaotic dynamic...
We report the experimental implementation of the most fundamental NOR gate with a chaotic Chua's cir...
We report the experimental verification of thresholding as a versatile tool for efficient and flexib...
We describe and discuss in detail some recent results by Sinha and Ditto [Phys. Rev. Lett. 81, 2156 ...
We show how stroboscopic threshold mechanisms can be effectively employed to obtain a wide range of ...
We demonstrate the basic principles for the direct and flexible implementation of all basic logical ...
Summarization: The classical Chua’s circuit that realizes chaotic behavior is presented. This circui...
"We report experimental results obtained with a circuit possessing dynamic logic architecture based ...
Chaotic systems can yield a wide variety of patterns. Here we use this feature to generate all possi...
4noThis chapter discusses the problem of "chaos generation", namely efficient techniques for the des...
Basic principles of implementing the most fundamental computing functions by chaotic elements are de...
This Letter proposes a novel thresholding approach for creating multi-scroll chaotic attractors. The...
This chapter discusses the problem of \u201cchaos generation\u201d, namely efficient techniques for ...
We propose a very simple implementation of a second-order nonautonomous chaotic oscillator, using a ...
Certain nonlinear systems can switch between dynamical attractors occupying different regions of pha...
We report the experimental realization of a simple threshold controller, which clips chaotic dynamic...
We report the experimental implementation of the most fundamental NOR gate with a chaotic Chua's cir...
We report the experimental verification of thresholding as a versatile tool for efficient and flexib...
We describe and discuss in detail some recent results by Sinha and Ditto [Phys. Rev. Lett. 81, 2156 ...
We show how stroboscopic threshold mechanisms can be effectively employed to obtain a wide range of ...
We demonstrate the basic principles for the direct and flexible implementation of all basic logical ...
Summarization: The classical Chua’s circuit that realizes chaotic behavior is presented. This circui...
"We report experimental results obtained with a circuit possessing dynamic logic architecture based ...
Chaotic systems can yield a wide variety of patterns. Here we use this feature to generate all possi...
4noThis chapter discusses the problem of "chaos generation", namely efficient techniques for the des...
Basic principles of implementing the most fundamental computing functions by chaotic elements are de...
This Letter proposes a novel thresholding approach for creating multi-scroll chaotic attractors. The...
This chapter discusses the problem of \u201cchaos generation\u201d, namely efficient techniques for ...
We propose a very simple implementation of a second-order nonautonomous chaotic oscillator, using a ...
Certain nonlinear systems can switch between dynamical attractors occupying different regions of pha...