论文标题
Terahertz频率梳子利用片上解决方案加工的石墨烯 - 量子级联激光耦合 - 腔体体系结构
Terahertz frequency combs exploiting an on-chip solution processed graphene-quantum cascade laser coupled-cavity architecture
论文作者
论文摘要
在Terahertz(THZ)的频率上,具有超高增益光谱的量子cascade激光器(QCL)的能力,以及对群体速度分散的全部补偿,是设计整个石器时代和微型光学频率 - bomb-bomb-bomb-bombsynthesizizers(fcs)的基本需求。在THZ QCL的四波混合中,由Intersubband增益中介质的固有三阶敏感性驱动,自锁相位的光学模式,允许稳定的梳子操作,尽管在受限的动态范围内(约为激光器操作范围的20%)。在这里,我们设计了小型THZ FCSS,其中包括与紧密耦合的芯片上溶液处理的可加工石墨烯可饱和的吸收式反射器集成的异质THZ QCL,即使四波混合不再提供分散补偿,也可以保持激光模式之间的相位相互关系。这样可以证明具有超过90个光学模式的高功率(8 MW)FC,超过激光运行范围的55%以上。此外,还显示了稳定的注射锁定,为影响许多关键应用(包括高精度可调的宽带光谱和量子计量学)铺平了道路。
The ability to engineer quantum-cascade-lasers (QCLs) with ultrabroad gain spectra and with a full compensation of the group velocity dispersion, at Terahertz (THz) frequencies, is a fundamental need for devising monolithic and miniaturized optical frequency-comb-synthesizers (FCS) in the far-infrared. In a THz QCL four-wave mixing, driven by the intrinsic third-order susceptibility of the intersubband gain medium, self-lock the optical modes in phase, allowing stable comb operation, albeit over a restricted dynamic range (~ 20% of the laser operational range). Here, we engineer miniaturized THz FCSs comprising a heterogeneous THz QCL integrated with a tightly-coupled on-chip solution-processed graphene saturable-absorber reflector that preserves phase-coherence between lasing modes even when four-wave mixing no longer provides dispersion compensation. This enables a high-power (8 mW) FCS with over 90 optical modes to be demonstrated, over more than 55% of the laser operational range. Furthermore, stable injection-locking is showed, paving the way to impact a number of key applications, including high-precision tuneable broadband-spectroscopy and quantum-metrology.