Using dual ring structure with different coupling ratio for S-band erbium-based fiber laser

2008 ◽  
Vol 5 (1) ◽  
pp. 51-54 ◽  
Author(s):  
C-H Yeh ◽  
C-N Lee ◽  
F-Y Shih ◽  
S Chi
2019 ◽  
Vol 58 (8) ◽  
pp. 082003
Author(s):  
Weiqing Gao ◽  
Panyun Gao ◽  
Xiu Zhang ◽  
Zhengxiong Zhang ◽  
Wenhui Jiang ◽  
...  

2016 ◽  
Vol 27 ◽  
pp. 46-48 ◽  
Author(s):  
Chien-Hung Yeh ◽  
Jhih-Yu Chen ◽  
Hone-Zhang Chen ◽  
Chi-Wai Chow

2018 ◽  
Vol 0 (0) ◽  
Author(s):  
Yan Senlin

AbstractThis 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.


Optik ◽  
2020 ◽  
Vol 208 ◽  
pp. 163899 ◽  
Author(s):  
Ruitao Yang ◽  
Hao Sun ◽  
Pengcheng Hu ◽  
Hongxing Yang ◽  
Haijin Fu ◽  
...  

Author(s):  
Zhifu Zhao ◽  
Shiyu Wang

This work is to study parametric vibration of a dual-ring structure through analytical and numerical methods by focusing on the relationships between basic parameters and parametric instability. An elastic dual-ring model is developed by using Lagrange method, where the radial and tangential deflections are included, and motionless and moving supports are also incorporated. Analytical results imply that there are four kinds of parametric excitations, and the numerical results show that there exist stable and unstable areas separated by transition curves or straight lines, and even crossover points. The relationships are determined as simple expressions in basic parameters, including discrete stiffness number and wavenumber. Whether the parametric resonance can be excited or not depends on the values of support stiffness, rotating speed, and natural frequency. Vibrations at the crossover points are also addressed by using the multiscale method. Comparisons against the available results regarding ring structures with moving supports are also made. Extensions of this study, including the use of powerful Sinha method to deal with the parametric vibration, are suggested.


2018 ◽  
Vol 876 ◽  
pp. 147-151
Author(s):  
Sen Lin Yan

Controlling chaotic dual-ring erbium-doped fiber laser and the produced dynamics are studied by modulating or shifting the laser loss while the control model is presented to pressure behavior of the laser to a periodic state or multi-periodic states by a periodic signal perturbing or shifting the loss. When the loss of one ring of the laser is modulated via a sinusoidal signal, chaotic behaviors of the dual-ring can be pressured in two single-periodic states while two rings emit cyclic pulses. It indicates that chaotic dual-ring erbium-doped fiber laser is effectively controlled. When another sinusoidal signal is taken to perform on the loss, the laser can be educe to present a period-2 or period-3 state. When the loss is shifted between two different levels, the dual-ring can be deduced to a period-4, a period-6 and other multi-periodic state. The results indicate that controlling chaotic dual-ring erbium-doped fiber laser can be realized via the chaos-control method.


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