Komagata K, Shehzad A, Terrasanta G, Brochard P, Matthey R, Gianella M, Jouy P, Kapsalidis F, Shahmohammadi M, Beck M, Wittwer V J, Faist J, Emmenegger L, Südmeyer T, Hugi A, Schilt S
Opt Express. 2021 Jun 7;29(12):19126-19139. doi: 10.1364/OE.425480.
We demonstrate coherent averaging of the multi-heterodyne beat signal between two quantum cascade laser frequency combs in a master-follower configuration. The two combs are mutually locked by acting on the drive current to control their relative offset frequency and by radio-frequency extraction and injection locking of their intermode beat signal to stabilize their mode spacing difference. By implementing an analog common-noise subtraction scheme, a reduction of the linewidth of all heterodyne beat notes by five orders of magnitude is achieved compared to the free-running lasers. We compare stabilization and post-processing corrections in terms of amplitude noise. While they give similar performances in terms of signal-to-noise ratio, real-time processing of the stabilized signal is less demanding in terms of computational power. Lastly, a proof-of-principle spectroscopic measurement was performed, showing the possibility to reduce the amount of data to be processed by three orders of magnitude, compared to the free-running system.
我们展示了在主从配置下两个量子级联激光频率梳之间多外差拍频信号的相干平均。通过作用于驱动电流来控制它们的相对偏移频率,并通过射频提取和注入锁定它们的模式间拍频信号以稳定它们的模式间距差,从而使两个频率梳相互锁定。通过实施一种模拟共噪声减法方案,与自由运行的激光器相比,所有外差拍频分量的线宽降低了五个数量级。我们在幅度噪声方面比较了稳定和后处理校正。虽然它们在信噪比方面表现相似,但稳定信号的实时处理在计算能力方面要求较低。最后,进行了原理验证光谱测量,结果表明与自由运行系统相比,有可能将待处理的数据量减少三个数量级。