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单片量子级联激光器中以倍频程间隔存在的频率梳

Coexisting frequency combs spaced by an octave in a monolithic quantum cascade laser.

作者信息

Forrer Andres, Rösch Markus, Singleton Matthew, Beck Mattias, Faist Jérôme, Scalari Giacomo

出版信息

Opt Express. 2018 Sep 3;26(18):23167-23177. doi: 10.1364/OE.26.023167.

Abstract

Quantum cascade lasers are proving to be instrumental in the development of compact frequency comb sources at mid-infrared and terahertz frequencies. Here we demonstrate a heterogeneous terahertz quantum cascade laser with two active regions spaced exactly by one octave. Both active regions are based on a four-quantum well laser design and they emit a combined 3 mW peak power at 15 K in pulsed mode. The two central frequencies are 2.3 THz (bandwidth 300 GHz) and 4.6 THz (bandwidth 270 GHz). The structure is engineered in a way that allows simultaneous operation of the two active regions in the comb regime, serving as a double comb source as well as a test bench structure for all waveguide internal self-referencing techniques. Narrow RF beatnotes (∼ 15 kHz) are recorded showing the simultaneous operation of the two combs, whose free-running coherence properties are investigated by means of beatnote spectroscopy performed both with an external detector and via self-mixing. Comb operation in a highly dispersive region (4.6 THz) relying only on gain bandwidth engineering shows the potential for broad spectral coverage with compact comb sources.

摘要

量子级联激光器在中红外和太赫兹频段紧凑型频率梳源的开发中发挥着重要作用。在此,我们展示了一种异质太赫兹量子级联激光器,其两个有源区精确间隔一个倍频程。两个有源区均基于四量子阱激光器设计,在15 K温度下以脉冲模式工作时,它们的峰值功率合计为3 mW。两个中心频率分别为2.3太赫兹(带宽300吉赫兹)和4.6太赫兹(带宽270吉赫兹)。该结构的设计方式使得两个有源区能够在频率梳模式下同时工作,既作为双频梳源,又作为所有波导内部自参考技术的测试平台结构。记录到了窄射频拍频(约15千赫兹),表明两个频率梳同时工作,通过使用外部探测器以及自混频进行拍频光谱分析,研究了它们的自由运行相干特性。仅依靠增益带宽工程在高色散区域(4.6太赫兹)实现的频率梳操作,展示了紧凑型频率梳源实现宽光谱覆盖的潜力。

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