论文标题

Terahertz半导体双弯曲激光器的主动稳定,采用相锁定技术

Active Stabilization of Terahertz Semiconductor Dual-Comb Laser Sources Employing a Phase Locking Technique

论文作者

Zhao, Yiran, Li, Ziping, Zhou, Kang, Liao, Xiaoyu, Guan, Wen, Wan, Wenjian, Yang, Sijia, Cao, J. C., Xu, Dong, Barbieri, Stefano, Li, Hua

论文摘要

对于高分辨率光谱和计量学而言,具有相同间隔和低相位噪声频率线的双弹源非常重要。在Terahertz频率范围内,电泵送的半导体量子级联激光器(QCLS)是适合频率梳和双弯曲操作的候选物。对于单个激光频率梳子,可以使用微波注入锁定锁定重复率,并且可以将载体频率锁定到高度稳定的源。但是,对于两个激光梳的锁定,应同时锁定四个频率(两个重复率和两个载波偏移频率);如果一个仅指双弯曲信号,则应锁定两个相对频率,即,一个激光器对另一激光的偏移频率和重复频率应锁定。尽管已成功用于单个激光梳子的锁定技术原则上可以应用于双弯曲激光源,但完整的锁定非常复杂,这使得实现了此类系统。在这里,我们提出了一种方法,通过将双弯曲线之一的一条锁定到射频(RF)合成器中稳定Terahertz QCL双弯曲源。该技术迫使其中一种激光遵循另一个激光的音调(保持两个激光梳子作为常数的载体偏移频率差和重复频率差),通过利用激光自我检测,以避免使用外部检测器。通过这种锁定技术的演示,我们证明了双弯曲可以在2美国时间尺度上产生周期性脉冲,表明Terahertz QCL梳子而没有控制重复速率可以产生脉冲型波形。

Dual-comb sources with equally spaced and low phase noise frequency lines are of great importance for high resolution spectroscopy and metrology. In the terahertz frequency range, electrically pumped semiconductor quantum cascade lasers (QCLs) are suitable candidates for frequency comb and dual-comb operation. For a single laser frequency comb, the repetition rate can be locked using a microwave injection locking and the carrier frequency can be locked to a highly stable source. However, for the locking of two laser combs, four frequencies (two repetition rates and two carrier offset frequencies) should be simultaneously locked; If one only refers to the dual-comb signal, two relative frequencies, i.e., the offset frequency and repetition frequency of one laser against those of the other laser, should be locked. Although the locking techniques that have been successfully used for a single laser comb can be, in principle, applied to a dual-comb laser source, the complete locking considerably complicates the implementation of such a system. Here, we propose a method to stabilize a terahertz QCL dual-comb source by phase locking one of the dual-comb lines to a radio frequency (RF) synthesizer. This technique forces one of the lasers to follow the tone of the other one (keeping the sum of the carrier offset frequency difference and repetition frequency difference between the two laser combs as a constant) by exploiting a laser self-detection that avoids the use of an external detector. Through the demonstration of this locking technique, we demonstrate that the dual-comb can generate periodic pulses over a 2 us time scale, showing that the terahertz QCL comb without a control of the repetition rate can produce pulsed-type waveforms.

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