论文标题
通过小光学频率调整来控制和循环量子级联激光频率梳子
Controlling and Phase-Locking a THz Quantum Cascade Laser Frequency Comb by Small Optical Frequency Tuning
论文作者
论文摘要
最近已经证明了THZ发射量子级联激光(QCL)梳子的全相控制,即使是最苛刻的应用,也为新的观点开辟了新的观点。在此框架中,简化控制这些设备的设置将有助于加速它们在许多领域的传播。我们报告了一种使用非常简单的实验设置来控制THZ QCL梳子的发射频率的新方法,从而利用了普通的白光发射二极管的不一致发射。在这些条件下可访问的略微扰动式允许调整半导体的复杂折射率,而不会破坏宽带激光增益。软执行器的特征并与另一个执行器(QCL驱动电流)进行了比较。显示了这种额外的自由度对于频率和THZ QCL梳子的相位稳定的适用性,并讨论了观点。
Full phase control of THz emitting quantum cascade laser (QCL) combs has recently been demonstrated, opening new perspectives for even the most demanding applications. In this framework, simplifying the set-ups for control of these devices will help to accelerate their spreading in many fields. We report a new way to control the emission frequencies of a THz QCL comb by small optical frequency tuning (SOFT), using a very simple experimental setup, exploiting the incoherent emission of an ordinary white light emitting diode. The slightly perturbative regime accessible in these condition allows tweaking the complex refractive index of the semiconductor without destabilizing the broadband laser gain. The SOFT actuator is characterized and compared to another actuator, the QCL driving current. The suitability of this additional degree of freedom for frequency and phase stabilization of a THz QCL comb is shown and perspectives are discussed.