论文标题

高速扫描的整个带宽中红外化学成像

High-speed scanless entire bandwidth mid-infrared chemical imaging

论文作者

Zhao, Yue, Kusama, Shota, Furutani, Yuji, Huang, Wei-Hong, Luo, Chih-Wei, Fuji, Takao

论文摘要

中红外光谱探测分子振动,以鉴定化学物种和官能团。因此,中红外高光谱成像是使用光学方法进行化学成像的最强大和最有前途的候选者之一。然而,尚未实现高速和整个带宽中红外高光谱成像。在这里,我们报告了一种中红外的高光谱化学成像技术,该技术使用图像平面的亚周期脉冲的张开脉冲上转换。该技术提供的横向分辨率为15 $ $ m,并且可调节的视野在800 $ $ m $ \ times $ 600 $ $ m $ m至12毫米$ \ times $ \ times $ 9毫米之间。高光谱成像在8 s中产生640 $ \ times $ 480像素图像,涵盖了640-3015 cm $^{ - 1} $的光谱范围,包括1069波长点,并提供2.6-3.7 cm $^{ - 1} $的波数分辨率。对于离散的频率中红外成像,测量速度达到5 kHz的帧速率,即激光的重复速率。作为演示,我们在微流体设备,植物细胞和小鼠胚胎部分中有效地识别和映射了不同的组件。该技术在化学成像中的强大能力和潜在力有望应用于许多领域,例如化学分析,生物学和医学。

Mid-infrared spectroscopy probes molecular vibrations to identify chemical species and functional groups. Therefore, mid-infrared hyperspectral imaging is one of the most powerful and promising candidates for chemical imaging using optical methods. Yet high-speed and entire bandwidth mid-infrared hyperspectral imaging has not been realized. Here we report a mid-infrared hyperspectral chemical imaging technique that uses chirped pulse upconversion of sub-cycle pulses at the image plane. This technique offers a lateral resolution of 15 $μ$m, and the field of view is adjustable between 800 $μ$m $\times$ 600 $μ$m to 12 mm $\times$ 9 mm. The hyperspectral imaging produces a 640 $\times$ 480 pixel image in 8 s, which covers a spectral range of 640-3015 cm$^{-1}$, comprising 1069 wavelength points and offering a wavenumber resolution of 2.6-3.7 cm$^{-1}$. For discrete frequency mid-infrared imaging, the measurement speed reaches a frame rate of 5 kHz, the repetition rate of the laser. As a demonstration, we effectively identified and mapped different components in a microfluidic device, plant cell, and mouse embryo section. The great capacity and latent force of this technique in chemical imaging promise to be applied to many fields such as chemical analysis, biology, and medicine.

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