论文标题
横向耦合腔VCSEL:可实现100 GHz带宽
Transverse Coupled Cavity VCSEL: Making 100 GHz Bandwidth Achievable
论文作者
论文摘要
增强半导体激光器的调制带宽(MBW)已成为满足高速光子应用需求的研究和技术的挑战。在本文中,我们提出了与多个横向耦合腔(MTCC)集成的垂直腔表面发射激光器的设计,作为具有超高3-DB带宽的有前途的设备。激光具有高调制性能,因为从周围侧向TCCS进入VCSEL腔的慢灯反馈积累了强耦合。由于来自短TCC的光反馈,可在超高频率上发生光子 - 光子共振(PPR),该频率超过145 GHz,该反馈达到了170 GHz的3-DB MBW。该研究基于在周围TCC的多个横向慢灯反馈下对VCSEL动力学的建模。我们表明,与TCC-VCSEL相比,VCSEL与四个或六个反馈腔的集成在在慢灯耦合到VCSEL腔的较弱耦合下实现更高的MBW增强是有利的。我们还根据相对强度噪声(RIN)的傅立叶光谱在超高带宽方面中有希望的MTCC-VCSEL的噪声特性。
Enhancing the modulation bandwidth (MBW) of semiconductor lasers has been the challenge of research and technology to meet the need of high-speed photonic applications. In this paper, we propose the design of vertical-cavity surface-emitting laser integrated with multiple transverse coupled cavities (MTCCs) as a promising device with ultra-high 3-dB bandwidth. The laser features high modulation performance because of the accumulated strong coupling of the slow-light feedback from the surrounding lateral TCCs into the VCSEL cavity. Photon-photon resonance (PPR) is predicted to occur at ultra-high frequencies exceeding 145 GHz due to the optical feedback from short TCCs, which achieves 3-dB MBW reaching 170 GHz. The study is based on the modeling of the VCSEL dynamics under multiple transverse slow-light feedback from the surrounding TCCs. We show that the integration of the VCSEL with four or six feedback cavities is advantageous over the TCC-VCSEL in achieving much higher MBW enhancement under weaker coupling of slow-light into the VCSEL cavity. We also characterize the noise properties of the promising MTCC-VCSEL in the regime of ultra-high bandwidth in terms of the Fourier spectrum of the relative intensity noise (RIN).