Chang Peter, Ishrak Ragib, Hoghooghi Nazanin, Egbert Scott, Lesko Daniel, Swartz Stephanie, Biegert Jens, Rieker Gregory B, Reddy Rohith, Diddams Scott A
Department of Electrical, Computer and Energy Engineering, University of Colorado at Boulder, Boulder, Colorado 80309, USA.
Department of Physics, University of Colorado at Boulder, Boulder, Colorado 80309, USA.
APL Photonics. 2024 Oct;9(10). doi: 10.1063/5.0225616.
Mid-infrared microscopy is an important tool for biological analyses, allowing a direct probe of molecular bonds in their low energy landscape. In addition to the label-free extraction of spectroscopic information, the application of broadband sources can provide a third dimension of chemical specificity. However, to enable widespread deployment, mid-infrared microscopy platforms need to be compact and robust while offering high speed, broad bandwidth, and high signal-to-noise ratio. In this study, we experimentally showcase the integration of a broadband, high-repetition-rate dual-comb spectrometer (DCS) in the mid-infrared range with a scanning microscope. We employ a set of 1-GHz mid-infrared frequency combs, demonstrating their capability for high-speed and broadband hyperspectral imaging of polymers and ovarian tissue. The system covers at with 12.86 kHz spectra acquisition rate and spatial resolution. Taken together, our experiments and analysis elucidate the trade-off between bandwidth and speed in DCS as it relates to microscopy. This provides a roadmap for the future advancement and application of high-repetition-rate DCS hyperspectral imaging.
中红外显微镜是生物分析的重要工具,可直接探测分子键在其低能量态势下的情况。除了无标记提取光谱信息外,宽带光源的应用还能提供化学特异性的第三个维度。然而,为了实现广泛应用,中红外显微镜平台需要紧凑且坚固,同时具备高速、宽带和高信噪比。在本研究中,我们通过实验展示了将中红外波段的宽带、高重复率双梳状光谱仪(DCS)与扫描显微镜集成。我们采用了一组1吉赫兹的中红外频率梳,展示了它们对聚合物和卵巢组织进行高速和宽带高光谱成像的能力。该系统以12.86千赫兹的光谱采集速率和[具体空间分辨率数值缺失]的空间分辨率覆盖了[具体范围缺失]。综上所述,我们的实验和分析阐明了DCS中带宽与速度之间与显微镜相关的权衡。这为高重复率DCS高光谱成像的未来发展和应用提供了路线图。