首页> 外文会议>Semiconductor lasers and laser dynamics VI >Two semiconductor ring lasers coupled by a single-waveguide for optical memory operation
【24h】

Two semiconductor ring lasers coupled by a single-waveguide for optical memory operation

机译:通过单波导耦合的两个半导体环形激光器,用于光学存储操作

获取原文
获取原文并翻译 | 示例

摘要

Semiconductor ring lasers are semiconductor lasers where the laser cavity consists of a ring-shaped waveguide. SRLs are highly integrable and scalable, making them ideal candidates for key components in photonic integrated circuits. SRLs can generate light in two counterpropagating directions between which bistability has been demonstrated. Hence, information can be coded into the emission direction. This bistable operation allows SRLs to be used in systems for all-optical switching and as all-optical memories. For the demonstration of fast optical flip-flop operation, Hill et al. [Nature 432, 206 (2004)] fabricated two SRLs coupled by a single waveguide, rather than a solitary SRL. Nevertheless, the literature shows that a single SRL can also function perfectly as an all-optical memory. In our recent paper [W. Coomans et al., Phys. Rev. A 88, 033813, (2013)], we have raised the question whether coupling two SRLs to realize a single optical memory has any advantage over using a solitary SRL, taking into account the obvious disadvantage of a doubled footprint and power consumption. To provide the answer, we have presented in that paper a numerical study of the dynamical behavior of semiconductor ring lasers coupled by a single bus waveguide, both when weakly coupled and when strongly coupled. We have provided a detailed analysis of the multistable landscape in the coupled system, analyzed the stability of all solutions and related the internal dynamics in the individual lasers to the field effectively measured at the output of the waveguide. We have shown which coupling phases generally promote instabilities and therefore need to be avoided in the design. Regarding all-optical memory operation, we have demonstrated that there is no real advantage for bistable memory operation compared to using a solitary SRL. An increased power suppression ratio has been found to be mainly due to the destructive interference of the SRL fields at the low power port. Also, multistability between several modal configurations has been shown to remain unavoidable.
机译:半导体环形激光器是半导体激光器,其中激光腔由环形波导组成。 SRL具有高度的可集成性和可扩展性,使其成为光子集成电路关键组件的理想选择。 SRL可以在两个反向传播的方向上产生光,这两个方向已证明具有双稳性。因此,可以将信息编码为发射方向。这种双稳态操作使SRL可以在全光交换系统中用作全光存储器。为了演示快速光触发器操作,Hill等人。 [Nature 432,206(2004)]制造了两个通过单个波导耦合的SRL,而不是孤立的SRL。尽管如此,文献显示单个SRL也可以完美地用作全光存储器。在我们最近的论文中[W. Coomans等,Phys。 [Rev. A 88,033813,(2013)]中,我们提出了一个问题,即考虑到占地面积和功耗翻倍的明显缺点,将两个SRL耦合以实现单个光学存储器是否比使用单独的SRL具有任何优势。为了提供答案,我们在该论文中对弱耦合和强耦合时通过单个总线波导耦合的半导体环形激光器的动力学行为进行了数值研究。我们对耦合系统中的多稳态态势进行了详细分析,分析了所有解决方案的稳定性,并将各个激光器的内部动力学与在波导输出处有效测量的场相关。我们已经证明了哪些耦合阶段通常会促进不稳定性,因此需要在设计中避免。关于全光存储器操作,我们已经证明与使用单独的SRL相比,双稳态存储器操作没有真正的优势。已经发现增加的功率抑制比主要是由于低功率端口处SRL字段的破坏性干扰。同样,几种模态配置之间的多重稳定性已被证明是不可避免的。

著录项

相似文献

  • 外文文献
  • 中文文献
  • 专利
获取原文

客服邮箱:kefu@zhangqiaokeyan.com

京公网安备:11010802029741号 ICP备案号:京ICP备15016152号-6 六维联合信息科技 (北京) 有限公司©版权所有
  • 客服微信

  • 服务号