Construction of logic gates exploiting resonance phenomena in nonlinear systems

Author:

Murali K.1ORCID,Rajasekar S.2,Aravind Manaoj V.3,Kohar Vivek4ORCID,Ditto W. L.5,Sinha Sudeshna3

Affiliation:

1. Department of Physics, Anna University, Chennai 600 025, India

2. Department of Physics, Bharathidasan University, Tiruchirapalli 620 024, India

3. Indian Institute of Science Education and Research Mohali, Sector 81, Manauli PO 140 306, Punjab, India

4. The Jackson Laboratory, Bar Harbor, ME 04609, USA

5. Nonlinear Artificial Intelligence Lab, Department of Physics, North Carolina State University, Raleigh, NC 27695, USA

Abstract

A two-state system driven by two inputs has been found to consistently produce a response mirroring a logic function of the two inputs, in an optimal window of moderate noise. This phenomenon is called logical stochastic resonance (LSR). We extend the conventional LSR paradigm to implement higher-level logic architecture or typical digital electronic structures via carefully crafted coupling schemes. Further, we examine the intriguing possibility of obtaining reliable logic outputs from a noise-free bistable system, subject only to periodic forcing, and show that this system also yields a phenomenon analogous to LSR, termed Logical Vibrational Resonance (LVR), in an appropriate window of frequency and amplitude of the periodic forcing. Lastly, this approach is extended to realize morphable logic gates through the Logical Coherence Resonance (LCR) in excitable systems under the influence of noise. The results are verified with suitable circuit experiments, demonstrating the robustness of the LSR, LVR and LCR phenomena. This article is part of the theme issue ‘Vibrational and stochastic resonance in driven nonlinear systems (part 1)’.

Publisher

The Royal Society

Subject

General Physics and Astronomy,General Engineering,General Mathematics

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