论文标题
超快数据传输的量子点自旋VCSEL中的极化调制
Polarization Modulation in Quantum-Dot Spin-VCSELs for Ultrafast Data Transmission
论文作者
论文摘要
旋转腔腔表面发射激光器(Spin-VCSEL)正在进行在高速光学通信和支持光子计算的新范式的研究工作中。迄今为止,Spin-VCSELS的研究主要集中在量子孔(QW)设备上。但是,新型的量子点(QD)自旋VCSEL提供了增强的参数控制,允许对其光发射极化的有效,动力和超快操纵。在目前的贡献中,我们详细研究了QD自旋VCSEL的操作,但要受到极化调制,以用作光学通信系统中的超快光源。我们透露,QD Spin-VCELS在调制效率方面优于其QW的表现,从而提高了近两倍。我们还分析了关键设备参数在QD Spin-VCSELS(例如光子衰减率和点内放松速率)中对大型信号调制性能的影响。我们表明,除了表现出高达250Gbps的数据速率的增强的极化调制性能外,QD Spin-VCSEL还可以在双重(地面和激发态)发射中运行,从而使未来的令人兴奋的途径可用于在光学通信链路中多样地进行信息。
Spin-Vertical Cavity Surface Emitting Lasers (spin-VCSELs) are undergoing increasing research effort for new paradigms in high-speed optical communications and photon-enabled computing. To date research in spin-VCSELs has mostly focused on Quantum-Well (QW) devices. However, novel Quantum-Dot (QD) spin-VCSELs, offer enhanced parameter controls permitting the effective, dynamical and ultrafast manipulation of their light emissions polarization. In the present contribution we investigate in detail the operation of QD spin-VCSELs subject to polarization modulation for their use as ultrafast light sources in optical communication systems. We reveal that QD spin-VCSELs outperform their QW counterparts in terms of modulation efficiency, yielding a nearly two-fold improvement. We also analyse the impact of key device parameters in QD spin-VCSELs (e.g. photon decay rate and intra-dot relaxation rate) on the large signal modulation performance with regard to optical modulation amplitude and eye-diagram opening penalty. We show that in addition to exhibiting enhanced polarization modulation performance for data rates up to 250Gbps, QD spin-VCSELs enable operation in dual (ground and excited state) emission thus allowing future exciting routes for multiplexing of information in optical communication links.