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中红外量子级联激光频率梳中偏移频率与模式间隔之间的频率噪声相关性。

Frequency noise correlation between the offset frequency and the mode spacing in a mid-infrared quantum cascade laser frequency comb.

作者信息

Shehzad Atif, Brochard Pierre, Matthey Renaud, Kapsalidis Filippos, Shahmohammadi Mehran, Beck Mattias, Hugi Andreas, Jouy Pierre, Faist Jérôme, Südmeyer Thomas, Schilt Stéphane

出版信息

Opt Express. 2020 Mar 16;28(6):8200-8210. doi: 10.1364/OE.385849.

Abstract

The generation of frequency combs in the mid-infrared (MIR) spectral range by quantum cascade lasers (QCLs) has the potential for revolutionizing dual-comb multi-heterodyne spectroscopy in the molecular fingerprint region. However, in contrast to frequency combs based on passively mode-locked ultrafast lasers, their operation relies on a completely different mechanism resulting from a four-wave mixing process occurring in the semiconductor gain medium that locks the modes together. As a result, these lasers do not emit pulses and no direct self-referencing of a QCL comb spectrum has been achieved so far. Here, we present a detailed frequency noise characterization of a MIR QCL frequency comb operating at a wavelength of 8 µm with a mode spacing of ∼7.4 GHz. Using a beat measurement with a narrow-linewidth single-mode QCL in combination with a dedicated electrical scheme, we measured the frequency noise properties of an optical mode of the QCL comb, and indirectly of its offset frequency for the first time, without detecting it by the standard approach of nonlinear interferometry applied to ultrafast mode-locked lasers. In addition, we also separately measured the noise of the comb mode spacing extracted electrically from the QCL. We observed a strong anti-correlation between the frequency fluctuations of the offset frequency and mode spacing, leading to optical modes with a linewidth slightly below 1 MHz in the free-running QCL comb (at 1-s integration time), which is narrower than the individual contributions of the offset frequency and mode spacing that are at least 2 MHz each.

摘要

利用量子级联激光器(QCL)在中红外(MIR)光谱范围内产生频率梳,有望在分子指纹区域彻底改变双梳多外差光谱技术。然而,与基于被动锁模超快激光器的频率梳不同,其工作依赖于半导体增益介质中发生的四波混频过程所产生的完全不同的机制,该过程将模式锁定在一起。因此,这些激光器不发射脉冲,并且迄今为止尚未实现QCL梳状光谱的直接自参考。在此,我们展示了在波长为8 µm、模式间隔约为7.4 GHz下工作的MIR QCL频率梳的详细频率噪声特性。通过将窄线宽单模QCL的拍频测量与专用电气方案相结合,我们首次测量了QCL梳状光模式的频率噪声特性,并间接测量了其偏移频率的频率噪声特性,而无需通过应用于超快锁模激光器的非线性干涉测量的标准方法来检测它。此外,我们还分别测量了从QCL电提取的梳状模式间隔的噪声。我们观察到偏移频率和模式间隔的频率波动之间存在强烈的反相关性,导致自由运行的QCL梳状光模式(在1秒积分时间)的线宽略低于1 MHz,这比偏移频率和模式间隔各自至少2 MHz的单独贡献更窄。

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