STABILIZING HIGH-PERIOD ORBITS IN A CHAOTIC SYSTEM - THE DIODE RESONATOR

STABILIZING HIGH-PERIOD ORBITS IN A CHAOTIC SYSTEM - THE DIODE RESONATOR
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DOI:
10.1103/physrevlett.67.1953
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发表时间:
1991-10-07
影响因子:
8.6
通讯作者:
HUNT, ER
HUNT, ER
中科院分区:
物理与天体物理1区
文献类型:
--
作者:
HUNT, ER

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在二极管谐振腔中发现的混沌动力学已被转化为周期长达23个驱动周期的稳定轨道。所使用的方法是对Ott、Grebogi和Yorke[物理学家]的方法的改进。教化。64,1196(1990)。除了稳定现有的低周期轨道外,该方法还允许对吸引子进行微小的改变,从而使以前不存在的周期轨道稳定下来。它是一种模拟技术,因此可以非常快,使其适用于各种各样的系统。
The chaotic dynamics found in the diode resonator has been converted into stable orbits with periods up to 23 drive cycles long. The method used is a modification of that of Ott, Grebogi, and Yorke [Phys. Rev. Lett. 64, 1196 (1990)]. In addition to stabilizing existing low-period orbits, the method allows making small alterations in the attractor permitting previously nonexistent periodic orbits to be stabilized. It is an analog technique and therefore can be very fast, making it applicable to a wide variety of systems.