Consolino Luigi, Jung Seungyong, Campa Annamaria, De Regis Michele, Pal Shovon, Kim Jae Hyun, Fujita Kazuue, Ito Akio, Hitaka Masahiro, Bartalini Saverio, De Natale Paolo, Belkin Mikhail A, Vitiello Miriam Serena
Consiglio Nazionale delle Ricerche (CNR)-Istituto Nazionale di Ottica and European Laboratory for Non-Linear Spectroscopy, Via Carrara 1, 50019 Sesto Fiorentino (Firenze), Italy.
Department of Electrical and Computer Engineering, The University of Texas at Austin, Austin, TX 78712, USA.
Sci Adv. 2017 Sep 1;3(9):e1603317. doi: 10.1126/sciadv.1603317. eCollection 2017 Sep.
Terahertz sources based on intracavity difference-frequency generation in mid-infrared quantum cascade lasers (THz DFG-QCLs) have recently emerged as the first monolithic electrically pumped semiconductor sources capable of operating at room temperature across the 1- to 6-THz range. Despite tremendous progress in power output, which now exceeds 1 mW in pulsed and 10 μW in continuous-wave regimes at room temperature, knowledge of the major figure of merits of these devices for high-precision spectroscopy, such as spectral purity and absolute frequency tunability, is still lacking. By exploiting a metrological grade system comprising a terahertz frequency comb synthesizer, we measure, for the first time, the free-running emission linewidth (LW), the tuning characteristics, and the absolute center frequency of individual emission lines of these sources with an uncertainty of 4 × 10. The unveiled emission LW (400 kHz at 1-ms integration time) indicates that DFG-QCLs are well suited to operate as local oscillators and to be used for a variety of metrological, spectroscopic, communication, and imaging applications that require narrow-LW THz sources.
基于中红外量子级联激光器腔内差频产生的太赫兹源(太赫兹DFG-QCL)最近已成为首批能够在室温下在1至6太赫兹范围内工作的单片电泵浦半导体源。尽管在功率输出方面取得了巨大进展,目前在室温下脉冲输出超过1 mW,连续波输出超过10 μW,但对于这些用于高精度光谱学的器件的主要性能指标,如光谱纯度和绝对频率可调性,仍缺乏了解。通过利用一个包括太赫兹频率梳合成器的计量级系统,我们首次测量了这些源的自由运行发射线宽(LW)、调谐特性以及各发射线的绝对中心频率,不确定度为4×10。所揭示的发射线宽(1毫秒积分时间下为400 kHz)表明,DFG-QCL非常适合用作本地振荡器,并用于各种需要窄线宽太赫兹源的计量、光谱、通信和成像应用。