Wang Yixuan, Jia Zhiwei, Gao Zhensen, Xiao Jinlong, Wang Longsheng, Wang Yuncai, Huang Yongzhen, Wang Anbang
Opt Express. 2020 Jun 8;28(12):18507-18515. doi: 10.1364/OE.395434.
We numerically demonstrate the generation of wide-band laser chaos with flat power spectrum in a 2D circular-side hexagonal resonator (CSHR) microlaser subject to long-cavity optical feedback. The bandwidth and flatness of the chaotic power spectrum are investigated under different bias currents and optical feedback rates. Under low bias current, the bandwidth under an optimized optical feedback rate increases obviously as raising bias current and the power spectrum flatten simultaneously. Under high bias current, the optimized bandwidth gradually tends toward stabilization, with corresponding flatness less than 5 dB. We compare the chaotic power spectra with small-signal modulation response (SSR) curves under different bias currents. It can be concluded that wide-band and flat SSR indicates wide-band and flat chaotic power spectrum. This work argues that we can enhance laser chaos by using a laser device with wide-band and flat SSR and simple optical feedback configuration, which is significantly beneficial to synchronization-based applications including chaos communication and key distribution.
我们通过数值模拟证明,在受长腔光反馈作用的二维圆形边六边形谐振器(CSHR)微激光器中可产生具有平坦功率谱的宽带激光混沌。研究了在不同偏置电流和光反馈速率下混沌功率谱的带宽和平坦度。在低偏置电流下,优化光反馈速率时的带宽随着偏置电流的升高而明显增加,且功率谱同时变平坦。在高偏置电流下,优化带宽逐渐趋于稳定,相应的平坦度小于5 dB。我们比较了不同偏置电流下的混沌功率谱与小信号调制响应(SSR)曲线。可以得出结论,宽带且平坦的SSR表明存在宽带且平坦的混沌功率谱。这项工作表明,我们可以通过使用具有宽带且平坦SSR的激光器件和简单的光反馈配置来增强激光混沌,这对包括混沌通信和密钥分发在内的基于同步的应用具有显著益处。