光声光谱学
光声多普勒效应
光学
材料科学
波长
分光计
吸收(声学)
光声效应
信号(编程语言)
生物医学中的光声成像
光谱学
传感器
光电子学
物理
声学
计算机科学
量子力学
程序设计语言
作者
Jacob T. Friedlein,Esther Baumann,Kimberly A. Briggman,Gabriel M. Colación,Fabrizio R. Giorgetta,Aaron M. Goldfain,Daniel I. Herman,Eli Hoenig,Jeeseong Hwang,Nathan R. Newbury,Edgar F. Perez,C. S. Yung,Ian Coddington,Kevin C. Cossel
标识
DOI:10.1038/s41467-020-16917-y
摘要
Abstract 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.
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