Stochastic Kuramoto oscillators with inertia and higher-order interactions

Priyanka Rajwani, Sarika Jalan
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Abstract

Impact of noise in coupled oscillators with pairwise interactions has been extensively explored. Here, we study stochastic second-order coupled Kuramoto oscillators with higher-order interactions, and show that as noise strength increases the critical points associated with synchronization transitions shift toward higher coupling values. By employing the perturbation analysis, we obtain an expression for the forward critical point as a function of inertia and noise strength. Further, for overdamped systems we show that as noise strength increases, the first-order transition switches to second-order even for higher-order couplings. We include a discussion on nature of critical points obtained through Ott-Antonsen ansatz.
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具有惯性和高阶相互作用的随机仓本振荡器
噪声对具有成对相互作用的耦合振荡器的影响已被广泛探讨。在这里,我们研究了具有高阶相互作用的随机二阶耦合库拉莫托振荡器,结果表明,随着噪声强度的增加,与同步转换相关的临界点会向更高的耦合值转移。通过采用扰动分析,我们得到了前向临界点作为惯性和噪声强度函数的表达式。此外,对于过阻尼系统,我们表明随着噪声强度的增加,一阶过渡会转向二阶,即使是高阶耦合也是如此。我们还讨论了通过奥特-安东森公式得到的临界点的性质。
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