Cross-predicting the dynamics of an optically injected single-mode semiconductor laser using reservoir computing

被引:36
作者
Cunillera, A. [1 ]
Soriano, M. C. [1 ]
Fischer, I. [1 ]
机构
[1] UIB, CSIC, IFISC, Campus Univ Illes Balears, E-07122 Palma De Mallorca, Spain
关键词
RANDOM BIT GENERATION; CHAOS;
D O I
10.1063/1.5120822
中图分类号
O29 [应用数学];
学科分类号
070104 ;
摘要
In real-world dynamical systems, technical limitations may prevent complete access to their dynamical variables. Such a lack of information may cause significant problems, especially when monitoring or controlling the dynamics of the system is required or when decisions need to be taken based on the dynamical state of the system. Cross-predicting the missing data is, therefore, of considerable interest. Here, we use a machine learning algorithm based on reservoir computing to perform cross-prediction of unknown variables of a chaotic dynamical laser system. In particular, we chose a realistic model of an optically injected single-mode semiconductor laser. While the intensity of the laser can often be acquired easily, measuring the phase of the electric field and the carriers in real time, although possible, requires a more demanding experimental scheme. We demonstrate that the dynamics of two of the three dynamical variables describing the state of the laser can be reconstructed accurately from the knowledge of only one variable, if our algorithm has been trained beforehand with all three variables for a limited period of time. We analyze the accuracy of the method depending on the parameters of the laser system and the reservoir. Finally, we test the robustness of the cross-prediction method when adding noise to the time series. The suggested reservoir computing state observer might be used in many applications, including reconstructing time series, recovering lost time series data and testing data encryption security in cryptography based on chaotic synchronization of lasers. Published under license by AIP Publishing.
引用
收藏
页数:9
相关论文
共 28 条
[1]  
[Anonymous], 2012, SEMICONDUCTOR LASERS
[2]  
[Anonymous], 2001, GERMAN NATL RES CTR
[3]   Chaos-based communications at high bit rates using commercial fibre-optic links [J].
Argyris, A ;
Syvridis, D ;
Larger, L ;
Annovazzi-Lodi, V ;
Colet, P ;
Fischer, I ;
García-Ojalvo, J ;
Mirasso, CR ;
Pesquera, L ;
Shore, KA .
NATURE, 2005, 438 (7066) :343-346
[4]   Experimental Phase-Space Tomography of Semiconductor Laser Dynamics [J].
Brunner, D. ;
Soriano, M. C. ;
Porte, X. ;
Fischer, I. .
PHYSICAL REVIEW LETTERS, 2015, 115 (05)
[5]   Period-one oscillation for photonic microwave transmission using an optically injected semiconductor laser [J].
Chan, Sze-Chun ;
Hwang, Sheng-Kwang ;
Liu, Jia-Ming .
OPTICS EXPRESS, 2007, 15 (22) :14921-14935
[6]   3D pulsed chaos lidar system [J].
Cheng, Chih-Hao ;
Chen, Chih-Ying ;
Chen, Jun-Da ;
Pan, Da-Kung ;
Ting, Kai-Ting ;
Lin, Fan-Yi .
OPTICS EXPRESS, 2018, 26 (09) :12230-12241
[7]   LOCAL LYAPUNOV EXPONENTS IN CHAOTIC SYSTEMS [J].
ECKHARDT, B ;
YAO, DM .
PHYSICA D, 1993, 65 (1-2) :100-108
[8]  
Gershenfeld N., 1988, DIRECTIONS CHAOS, V2, P310, DOI DOI 10.1142/9789814415729_0012
[9]   CHAOS, STRANGE ATTRACTORS, AND FRACTAL BASIN BOUNDARIES IN NONLINEAR DYNAMICS [J].
GREBOGI, C ;
OTT, E ;
YORKE, JA .
SCIENCE, 1987, 238 (4827) :632-638
[10]   ON/OFF phase shift keying for chaos-encrypted communication using external-cavity semiconductor lasers [J].
Heil, T ;
Mulet, J ;
Fischer, I ;
Mirasso, CR ;
Peil, M ;
Colet, P ;
Elsässer, W .
IEEE JOURNAL OF QUANTUM ELECTRONICS, 2002, 38 (09) :1162-1170