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一般类极限环振荡器中噪声诱导相位同步的鲁棒性。

Robustness of the noise-induced phase synchronization in a general class of limit cycle oscillators.

作者信息

Teramae Jun-Nosuke, Tanaka Dan

机构信息

Brain Science Research Center, Tamagawa University, Machida, Tokyo, Japan.

出版信息

Phys Rev Lett. 2004 Nov 12;93(20):204103. doi: 10.1103/PhysRevLett.93.204103.

Abstract

We show that a wide class of uncoupled limit-cycle oscillators can be in-phase synchronized by common weak additive noise. An expression of the Lyapunov exponent is analytically derived to study the stability of the noise-driven synchronizing state. The result shows that such a synchronization can be achieved in a broad class of oscillators with little constraint on their intrinsic property. On the other hand, the leaky integrate-and-fire neuron oscillators do not belong to this class, generating intermittent phase slips according to a power law distribution of their intervals.

摘要

我们表明,一大类非耦合极限环振荡器可以通过共同的弱加性噪声实现同相同步。通过解析推导得到李雅普诺夫指数的表达式,以研究噪声驱动同步状态的稳定性。结果表明,这种同步可以在一大类振荡器中实现,对其固有特性几乎没有限制。另一方面,漏电积分发放神经元振荡器不属于此类,它们会根据其时间间隔的幂律分布产生间歇性相位滑移。

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