National Institute of Standards and Technology, Applied Physics Division, 325 Broadway, Boulder, CO, 80305, USA.
Department of Physics, University of Colorado, Boulder, CO, 80309, USA.
Nat Commun. 2020 Jun 19;11(1):3152. doi: 10.1038/s41467-020-16917-y.
Spectrally resolved photoacoustic imaging is promising for label-free imaging in optically scattering materials. However, this technique often requires acquisition of a separate image at each wavelength of interest. This reduces imaging speeds and causes errors if the sample changes in time between images acquired at different wavelengths. We demonstrate a solution to this problem by using dual-comb spectroscopy for photoacoustic measurements. This approach enables a photoacoustic measurement at thousands of wavelengths simultaneously. In this technique, two optical-frequency combs are interfered on a sample and the resulting pressure wave is measured with an ultrasound transducer. This acoustic signal is processed in the frequency-domain to obtain an optical absorption spectrum. For a proof-of-concept demonstration, we measure photoacoustic signals from polymer films. The absorption spectra obtained from these measurements agree with those measured using a spectrophotometer. Improving the signal-to-noise ratio of the dual-comb photoacoustic spectrometer could enable high-speed spectrally resolved photoacoustic imaging.
光谱分辨光声成像是在光散射材料中进行无标记成像的一种很有前途的技术。然而,该技术通常需要在每个感兴趣的波长处获取单独的图像。如果在不同波长采集的图像之间,样品随时间发生变化,这会降低成像速度并导致误差。我们通过使用双梳光谱学进行光声测量来解决这个问题。这种方法可以同时在数千个波长处进行光声测量。在该技术中,两个光频梳在样品上相互干涉,并且使用超声换能器测量所产生的压力波。通过对该声信号进行频域处理,获得光学吸收光谱。为了进行概念验证演示,我们从聚合物膜测量光声信号。从这些测量中获得的吸收光谱与使用分光光度计测量的吸收光谱一致。提高双梳光声光谱仪的信噪比可以实现高速光谱分辨光声成像。