Meng Bo, Wang Qi Jie
Division of Microelectronics, School of Electrical and Electronic Engineering, Nanyang Technological University, Singapore.
Opt Express. 2012 Jan 16;20(2):1450-64. doi: 10.1364/OE.20.001450.
In this study, we report for the first time to our knowledge theoretical investigation of modulation responses of injection-locked mid-infrared quantum cascade lasers (QCLs) at wavelengths of 4.6 μm and 9 μm, respectively. It is shown through a three-level rate equations model that the direct intensity modulation of QCLs gives the maximum modulation bandwidths of ~7 GHz at 4.6 μm and ~20 GHz at 9 μm. By applying the injection locking scheme, we find that the modulation bandwidths of up to ~30 GHz and ~70 GHz can be achieved for QCLs at 4.6 μm and 9 μm, respectively, with an injection ratio of 5 dB. The result also shows that an ultrawide modulation bandwidth of more than 200 GHz is possible with a 10 dB injection ratio for QCLs at 9 μm. An important characteristic of injection-locked QCLs is the nonexistence of unstable locking region in the locking map, in contrast to their diode laser counterparts. We attribute this to the ultra-short upper laser state lifetimes of QCLs.
在本研究中,据我们所知,我们首次分别对波长为4.6μm和9μm的注入锁定中红外量子级联激光器(QCL)的调制响应进行了理论研究。通过三能级速率方程模型表明,QCL的直接强度调制在4.6μm时给出的最大调制带宽约为7GHz,在9μm时约为20GHz。通过应用注入锁定方案,我们发现对于4.6μm和9μm的QCL,注入比为5dB时,调制带宽分别可达约30GHz和约70GHz。结果还表明,对于9μm的QCL,注入比为10dB时,有可能实现超过200GHz的超宽调制带宽。与二极管激光器相比,注入锁定QCL的一个重要特性是在锁定图中不存在不稳定锁定区域。我们将此归因于QCL的超短上激光态寿命。