Qi Xiaoqiong, Bertling Karl, Taimre Thomas, Agnew Gary, Leng Lim Yah, Gillespie Tim, Demić Aleksandar, Dean Paul, He Li Lian, Linfield Edmund H, Giles Davies A, Indjin Dragan, Rakić Aleksandar D
Opt Express. 2021 Nov 22;29(24):39885-39895. doi: 10.1364/OE.437861.
In this article, we explore the interplay between the self-pulsations (SPs) and self-mixing (SM) signals generated in terahertz (THz) quantum cascade lasers (QCLs) under optical feedback. We find that optical feedback dynamics in a THz QCL, namely, SPs, modulate the conventional SM interference fringes in a laser feedback interferometry system. The phenomenon of fringe loss in the SM signal - well known in interband diode lasers - was also observed along with pronounced SPs. With an increasing optical feedback strength, SM interference fringes transition from regular fringes at weak feedback (C ≤ 1) to fringes modulated by SPs under moderate feedback (1 < C ≤ 4.6), and then [under strong feedback (C > 4.6)] to a SM waveform with reduced number of fringes modulated by SP, until eventually (under even greater feedback) all the fringes are lost and only SPs are left visible. The transition route described above was identified in simulation when the SM fringes are created either by a moving target or a current modulation of the THz QCL. This SM signal transition route was successfully validated experimentally in a pulsed mode THz QCL with SM fringes created by current modulation during the pulse. The effects of SP dynamics in laser feedback interferometric system investigated in this work not only provides a further understanding of nonlinear dynamics in a THz QCL but also helps to understand the SM waveforms generated in a THz QCLs when they are used for various sensing and imaging applications.
在本文中,我们探讨了太赫兹(THz)量子级联激光器(QCL)在光反馈作用下产生的自脉冲(SPs)与自混合(SM)信号之间的相互作用。我们发现,太赫兹QCL中的光反馈动力学,即SPs,会调制激光反馈干涉测量系统中的传统SM干涉条纹。在带间二极管激光器中广为人知的SM信号条纹消失现象,也伴随着明显的SPs被观察到。随着光反馈强度的增加,SM干涉条纹从弱反馈(C≤1)时的规则条纹,转变为中等反馈(1<C≤4.6)时由SPs调制的条纹,然后[在强反馈(C>4.6)下]转变为受SP调制的条纹数量减少的SM波形,直到最终(在更强的反馈下)所有条纹消失,只剩下可见的SPs。上述转变路径是在模拟中确定的,当时SM条纹是由移动目标或太赫兹QCL的电流调制产生的。该SM信号转变路径在脉冲模式太赫兹QCL中通过实验成功验证,在脉冲期间通过电流调制产生SM条纹。本文研究的激光反馈干涉测量系统中SP动力学的影响,不仅有助于进一步理解太赫兹QCL中的非线性动力学,还有助于理解太赫兹QCL用于各种传感和成像应用时产生的SM波形。