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Binary data corruption due to a Brownian agent. II. Two dimensions, competing agents, and generalized couplings
1Department of Physics, Virginia Polytechnic Institute and State University, Blacksburg, Virginia 24061, USA. wtriampo@vt.edu
Summary
This study extends research on binary data corruption caused by Brownian agents. New analyses cover two-dimensional systems, competing agents, and asymmetric couplings, enhancing understanding of real bistable systems.
Area of Science:
- Physics
- Statistical Mechanics
- Complex Systems
Background:
- Builds upon prior research into binary data corruption by Brownian agents.
- Addresses limitations of previous models in representing real-world bistable systems.
Purpose of the Study:
- Extend the investigation of binary data corruption due to Brownian agents.
- Enhance the phenomenological model to better reflect real bistable systems.
- Analyze two-dimensional systems, competing agents, and asymmetric/quenched random couplings.
Main Methods:
- Extending a previously developed phenomenological model.
- Conducting extensive numerical simulations to support theoretical findings.
Main Results:
- Detailed analysis of two-dimensional systems reveals new dynamics.
- Investigation into competing agents provides insights into complex interactions.
- Asymmetric and quenched random couplings demonstrate significant effects on system stability.
Conclusions:
- The extended model offers a more comprehensive framework for studying bistable systems.
- Findings contribute to a deeper understanding of data corruption mechanisms in complex environments.
- Results have implications for designing more robust data storage and processing systems.