Justo Guerrero Manuel Alejandro, Arif Omer, Sorba Lucia, Vitiello Miriam Serena
NEST, CNR - Istituto Nanoscienze and Scuola Normale Superiore, Piazza San Silvestro 12, 56127, Pisa, Italy.
Nanophotonics. 2024 Feb 29;13(10):1835-1841. doi: 10.1515/nanoph-2023-0912. eCollection 2024 Apr.
Optical frequency comb synthesizers, operating in the harmonic regime, are metrological sources in which the emitted optical power is concentrated in a few modes, spaced by several multiples of the cavity free spectral range (FSR). This behavior reflects in a large correlation degree and, in principle, in an increased optical power per mode. In miniaturized quantum cascade lasers (QCLs), harmonic frequency combs (HFCs) are hence particularly attracting to explore quantum correlation effects between adjacent harmonic modes, enabled by the inherently large gain media third-order Kerr nonlinearity, even if controlled generation of stable HFCs of predefined order, is typically demanding in such electrically pumped sources. Here, we demonstrate stable 2 order and 3 order HFC emission in terahertz frequency QCLs by respectively patterning an individual or a couple of equally spaced distributed multilayer graphene absorbers on the top metallic waveguides.
工作在谐波 regime 的光学频率梳合成器是计量源,其中发射的光功率集中在少数几个模式中,这些模式以腔自由光谱范围(FSR)的几个倍数间隔开。这种行为反映在大的相关度上,并且原则上反映在每个模式的光功率增加上。在小型化量子级联激光器(QCL)中,谐波频率梳(HFC)因此特别吸引人们去探索相邻谐波模式之间的量子相关效应,这是由固有的大增益介质三阶克尔非线性实现的,即使在这种电泵浦源中,通常要求可控地产生预定义阶数的稳定 HFC。在这里,我们通过分别在顶部金属波导上图案化单个或一对等间距分布的多层石墨烯吸收体,在太赫兹频率 QCL 中展示了稳定的二阶和三阶 HFC 发射。