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奇数定理:半导体激光器亚临界霍普夫分岔处的光反馈控制

Odd-number theorem: optical feedback control at a subcritical Hopf bifurcation in a semiconductor laser.

作者信息

Schikora S, Wünsche H-J, Henneberger F

机构信息

Humboldt-Universität zu Berlin, Institut für Physik, Newtonstr. 15, D-12489 Berlin, Germany.

出版信息

Phys Rev E Stat Nonlin Soft Matter Phys. 2011 Feb;83(2 Pt 2):026203. doi: 10.1103/PhysRevE.83.026203. Epub 2011 Feb 14.

Abstract

A subcritical Hopf bifurcation is prepared in a multisection semiconductor laser. In the free-running state, hysteresis is absent due to noise-induced escape processes. The missing branches are recovered by stabilizing them against noise through application of phase-sensitive noninvasive delayed optical feedback control. The same type of control is successfully used to stabilize the unstable pulsations born in the Hopf bifurcation. This experimental finding represents an optical counterexample to the so-called odd-number limitation of delayed feedback control. However, as a leftover of the limitation, the domains of control are extremely small.

摘要

在多段半导体激光器中实现了亚临界霍普夫分岔。在自由运行状态下,由于噪声诱导的逃逸过程,不存在滞后现象。通过应用相敏非侵入式延迟光反馈控制来稳定缺失分支以抵抗噪声,从而恢复了这些分支。同样类型的控制成功地用于稳定在霍普夫分岔中产生的不稳定脉动。这一实验发现代表了延迟反馈控制所谓奇数限制的一个光学反例。然而,作为该限制的遗留问题,控制域极小。

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