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Volumn 136, Issue 19, 2012, Pages
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Potential flux landscapes determine the global stability of a Lorenz chaotic attractor under intrinsic fluctuations
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Author keywords
[No Author keywords available]
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Indexed keywords
AUTOCORRELATION FUNCTIONS;
BARRIER HEIGHTS;
CHAOTIC ATTRACTORS;
CHAOTIC OSCILLATION;
CHAOTIC STRANGE ATTRACTOR;
COHERENT MOTION;
ENTROPY PRODUCTION RATES;
GLOBAL STABILITY;
INTRINSIC FLUCTUATIONS;
LIMIT CYCLE;
PHASE COHERENCE;
POTENTIAL FLUX;
QUANTITATIVE MEASURES;
CHEMICAL STABILITY;
DYNAMICS;
ENTROPY;
REGRESSION ANALYSIS;
SPECTRUM ANALYSIS;
CHAOTIC SYSTEMS;
ARTICLE;
CHEMICAL MODEL;
ENTROPY;
MOLECULAR DYNAMICS;
NONLINEAR SYSTEM;
PROBABILITY;
ENTROPY;
MODELS, CHEMICAL;
MOLECULAR DYNAMICS SIMULATION;
NONLINEAR DYNAMICS;
PROBABILITY;
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EID: 84861691830
PISSN: 00219606
EISSN: None
Source Type: Journal
DOI: 10.1063/1.4716466 Document Type: Article |
Times cited : (25)
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References (34)
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