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中国物理学会期刊

基于光反馈的单向耦合注入垂直腔表面发射激光器的矢量混沌同步特性研究

CSTR: 32037.14.aps.56.3279

Vectorial chaotic synchronization characteristics of unidrectionally coupled and injected vertical-cavity surface-emitting lasers based on optical feedback

CSTR: 32037.14.aps.56.3279
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  • 基于自旋反向模型(SFM),数值研究了基于光反馈的单向耦合注入垂直腔表面发射激光器的矢量混沌同步特性,研究结果表明:当外部光反馈时间等于光从发射系统到接收系统传输时间时, x偏振模和y偏振模都能接收最好的完全混沌同步质量.若外部光反馈时间不等于传输时间且注入电流接近阈值电流时,占主导的y偏振模能暂时实现较好的完全混沌同步质量.相比较而言,占主导地位的x偏振模至始至终获得很差的同步质量,另外,当系统输出为混合偏振模时,混合偏振模中的每一个线性偏振模获得很差完全同步质量.然而,当注入电流远大于阈值电流时,系统输出仅为y偏振模,这时y偏振模能稳定地实现最好的完全混沌同步质量.最后,当接收激光器受到线性偏振模的强注入时,每一个注入线性偏振模能与接收激光器输出的对应的线性偏振模实现很好的注入锁定同步.然而,每一个占主导的线性偏振模比另一被抑制的线性偏振模获得更差注入锁定同步质量、如果有相等的能量的两个线性偏振模同时存在,这两个线性偏振模获得差不多一致的注入锁定混同步质量, 换句话说,能量较少的线性偏振能获得较高的注入锁定同步质量.

     

    Based on the Spin Flip Model (SFM), vectorial chaotic synchronization characteristics of vertical-cavity surface-emitting semiconductor lasers (VCSELs) with isotropic optical feedback is numerically investigated. The results are as follows. First, when the external cavity round-trip time equals the propagation time of light from the transmitter to the receiver, both the x-linear polarization (LP) mode and the y-LP mode can realize very high complete synchronization. Second, when external cavity round-trip time is not equal to the propagation time and μ is near the lasing threshold, the better completely synchronized quality of the dominant y-LP mode can be temporarily achieved. In comparison, the governing x-LP mode can only realized poor synchronization quality. In addition, with the system governed by the mixed LP modes, each LP mode can obtain inferior synchronization quality. However, with injection current much greater than the threshold current, the completely governed y-LP mode can steadily achieve the best chaotic synchronization quality. At last, each LP mode of the injection can achieve good injection-locking synchronization with that of the receiver. While each dominant LP mode can obtaine poorer injection-locking synchronization quality than the corresponding suppressed LP mode, with equal power, two LP modes both can achieve almost identical high injection-locking synchronization quality. Namely, the LP state with less power can be obtain better injection-locking synchronization.

     

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