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基于布里渊光散射和光声效应的多功能多模态

Versatile multimodal modality based on Brillouin light scattering and the photoacoustic effect.

出版信息

Opt Lett. 2023 Jul 1;48(13):3427-3430. doi: 10.1364/OL.495361.

Abstract

Multimodal optical techniques are useful for the comprehensive characterization of material properties. In this work, we developed a new, to the best of our knowledge, multimodal technology that can simultaneously measure a subset of mechanical, optical, and acoustical properties of the sample and is based on the integration of Brillouin (Br) and photoacoustic (PA) microscopy. The proposed technique can acquire co-registered Br and PA signals from the sample. Importantly, using synergistic measurements of the speed of sound and Brillouin shift, the modality offers a new approach to quantifying the optical refractive index, which is a fundamental property of a material and is not accessible by either technique individually. As a proof of concept, we demonstrated the feasibility of integrating the two modalities and acquired the colocalized Br and time-resolved PA signals in a synthetic phantom made out of kerosene and CuSO aqueous solution. In addition, we measured the refractive index values of saline solutions and validated the result. Comparison with previously reported data showed a relative error of 0.3%. This further allowed us to directly quantify the longitudinal modulus of the sample with the colocalized Brillouin shift. While the scope of the current work is limited to introducing the combined Br-PA setup for the first time, we envision that this multimodal modality could open a new path for the multi-parametric analysis of material properties.

摘要

多模态光学技术对于全面表征材料特性非常有用。在这项工作中,我们开发了一种新的、据我们所知的多模态技术,该技术可以同时测量样品的一部分机械、光学和声学特性,其基础是布里渊(Br)和光声(PA)显微镜的集成。所提出的技术可以从样品中获取共定位的 Br 和 PA 信号。重要的是,通过对声速和布里渊频移的协同测量,该模式提供了一种新的方法来量化光学折射率,这是材料的基本性质,这两种技术单独使用都无法测量。作为概念验证,我们演示了两种模式的集成的可行性,并在由煤油和 CuSO 水溶液制成的合成模型中获得了共定位的 Br 和时间分辨的 PA 信号。此外,我们测量了生理盐水溶液的折射率值,并验证了结果。与以前报道的数据进行比较,相对误差为 0.3%。这进一步允许我们直接用共定位布里渊频移来定量样品的纵向模量。虽然当前工作的范围仅限于首次引入组合 Br-PA 装置,但我们设想这种多模态模式可以为材料性质的多参数分析开辟新途径。

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