聖塔非研究所

摘要 Oscillatory phenomena are ubiquitous in Nature. T

2016-01-12 · 已發表論文 · 更新 2026/08/30 下午12:48

摘要 Oscillatory phenomena are ubiquitous in Nature. The ability of a large 族群 of coupled oscillators to synchronize constitutes an important mechanism to express 資訊 and establish communicatio…

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  • 類型:已發表論文
  • 日期:2016-01-12

摘要

Oscillatory phenomena are ubiquitous in Nature. The ability of a large 族群 of coupled oscillators to synchronize constitutes an important mechanism to express 資訊 and establish communication among members. To understand such phenomena, models and experimental realizations of globally coupled oscillators have proven to be invaluable in settings as varied as chemical, 生物 and physical systems. A variety of rich dynamical behavior has been uncovered, although usually in the context of a single state of 同步化 or lack thereof. Through the experimental and numerical study of a large 族群 of discrete chemical oscillators, here we report on the unexpected discovery of a new phenomenon revealing the existence of dynamically distinct synchronized states reflecting different degrees of communication. Specif

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