Study of Chaos Control of a Dual-Ring Erbium-Doped Fiber Laser Using Parameter Method

Author:

Senlin Yan1

Affiliation:

1. School of Electronic Engineering , Nanjing XiaoZhuang University , Nanjing , China

Abstract

Abstract This paper aims to study single-parameter and dual-parameter chaos control of a dual-ring erbium-doped fiber laser. We present the control model to pressure chaotic behavior of the laser to a periodic state or multi-periodic states by introducing a periodic mutational signal to adjust the losses of dual ring. When the loss of single ring is shifted between two different levels, the laser behaviors can be deduced to two single-period states, while two rings can emit cyclic pulses. We find a control-locking regime and discuss its frequency characteristic of the laser. When another signal is taken to control to perform on the loss, the laser can be deduced to show a period-2 state, a period-3 state, period-4 state and other multi-periodic states. And we find dual-dynamic controlled regimes, in which, one ring of the laser can be produced to show a periodic state while another ring presents a period-3 state. We find also a dual-period regime or a period-4 regime. When both the losses of dual ring are adjusted by shifting between different levels, the laser can produce a period-4, a period-6 and other multi-periodic states. The result indicates that chaos control of a dual-ring erbium-doped fiber laser can be realized using the single-parameter and dual-parameter methods.

Publisher

Walter de Gruyter GmbH

Subject

Electrical and Electronic Engineering,Condensed Matter Physics,Atomic and Molecular Physics, and Optics

Cited by 6 articles. 订阅此论文施引文献 订阅此论文施引文献,注册后可以免费订阅5篇论文的施引文献,订阅后可以查看论文全部施引文献

1. “D-Modulation” Results in Anti-Controlling-Chaos of A NH3 Laser;2023 7th International Conference on Communication and Information Systems (ICCIS);2023-10-20

2. Study of dual‐hyperchaos synchronization between an erbium‐doped fiber three‐ring laser and an erbium‐doped fiber dual‐ring laser, and their applications to dual‐channel encoding;Electronics Letters;2023-07

3. Bi-stability and bifurcation in an erbium-doped fiber three-ring laser;International Conference on Network Communication and Information Security (ICNCIS 2022);2022-11-28

4. Study of an erbium-doped fiber three-ring laser guiding a hyperchaos series synchronization network link;International Conference on Network Communication and Information Security (ICNCIS 2022);2022-11-28

5. Study of hyperchaos resulting from an erbium‐doped fibre three‐ring laser system;Electronics Letters;2022-01-17

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