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通过无传感器自适应光学技术校正像差的布里渊显微光谱学。

Brillouin micro-spectroscopy through aberrations via sensorless adaptive optics.

作者信息

Edrei Eitan, Scarcelli Giuliano

机构信息

Fischell Department of Bioengineering, University of Maryland, College Park, Maryland 20742, USA.

出版信息

Appl Phys Lett. 2018 Apr 16;112(16):163701. doi: 10.1063/1.5027838.

Abstract

Brillouin spectroscopy is a powerful optical technique for non-contact viscoelastic characterizations which has recently found applications in three-dimensional mapping of biological samples. Brillouin spectroscopy performances are rapidly degraded by optical aberrations and have therefore been limited to homogenous transparent samples. In this work, we developed an adaptive optics (AO) configuration designed for Brillouin scattering spectroscopy to engineer the incident wavefront and correct for aberrations. Our configuration does not require direct wavefront sensing and the injection of a "guide-star"; hence, it can be implemented without the need for sample pre-treatment. We used our AO-Brillouin spectrometer in aberrated phantoms and biological samples and obtained improved precision and resolution of Brillouin spectral analysis; we demonstrated 2.5-fold enhancement in Brillouin signal strength and 1.4-fold improvement in axial resolution because of the correction of optical aberrations.

摘要

布里渊光谱是一种强大的光学技术,用于非接触式粘弹性表征,最近已应用于生物样品的三维映射。光学像差会迅速降低布里渊光谱的性能,因此其应用仅限于均匀透明样品。在这项工作中,我们开发了一种用于布里渊散射光谱的自适应光学(AO)配置,以设计入射波前并校正像差。我们的配置不需要直接波前传感和“导星”注入;因此,无需对样品进行预处理即可实现。我们将AO-布里渊光谱仪用于有像差的体模和生物样品,提高了布里渊光谱分析的精度和分辨率;由于校正了光学像差,我们证明布里渊信号强度提高了2.5倍,轴向分辨率提高了1.4倍。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/3f55/5902333/8ec8a17e3de4/APPLAB-000112-163701_1-g001.jpg

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