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在径向和线偏振光紧聚焦激发下散射体尺寸对近场相干反斯托克斯拉曼散射的影响。

Effects of scatterers' sizes on near-field coherent anti-Stokes Raman scattering under tightly focused radially and linearly polarized light excitation.

作者信息

Lin Jian, Zheng Wei, Wang Haifeng, Huang Zhiwei

机构信息

Bioimaging Laboratory, Department of Bioengineering, Faculty of Engineering, National University of Singapore, Singapore 117576, Singapore.

出版信息

Opt Express. 2010 May 10;18(10):10888-95. doi: 10.1364/OE.18.010888.

Abstract

We employ the finite-difference time-domain (FDTD) technique as a numerical approach to studying the effects of scatterers' sizes on near-field coherent anti-Stokes Raman scattering (CARS) microscopy under tightly focused radially and linearly polarized light excitations. The FDTD results show that in a uniform medium (water), the full width at half maximum (FWHM) (transverse resolution) of radially polarized near-field CARS (RP-CARS) radiation is approximately 7.7% narrower than that of linearly polarized near-field CARS (LP-CARS) imaging, whereas the depth of focus (DOF) of RP-CARS radiation is 6.5% longer than LP-CARS. However, with the presence of scatterers in the uniform medium, both the FHWM and DOF of near-field RP-CARS radiation become much narrower compared to those of near-field LP-CARS radiation. In addition, the signal to nonresonant background ratio of near-field RP-CARS is significantly improved when the scatterer's size is larger than a half wavelength of the pump light field. This work suggests that near-field CARS radiations are strongly influenced by the scatterers' sizes in the medium; and near-field RP-CARS microscopy is superior to the near-field LP-CARS by providing both higher transverse and axial resolutions for three-dimensional molecular imaging of fine structures in biological systems.

摘要

我们采用时域有限差分(FDTD)技术作为一种数值方法,来研究在径向和线偏振光紧聚焦激发下,散射体尺寸对近场相干反斯托克斯拉曼散射(CARS)显微镜的影响。FDTD结果表明,在均匀介质(水)中,径向偏振近场CARS(RP-CARS)辐射的半高宽(FWHM)(横向分辨率)比线偏振近场CARS(LP-CARS)成像的约窄7.7%,而RP-CARS辐射的焦深(DOF)比LP-CARS长6.5%。然而,在均匀介质中存在散射体时,与近场LP-CARS辐射相比,近场RP-CARS辐射的FWHM和DOF都变得窄得多。此外,当散射体尺寸大于泵浦光场的半个波长时,近场RP-CARS的信号与非共振背景比会显著提高。这项工作表明,近场CARS辐射受介质中散射体尺寸的强烈影响;并且近场RP-CARS显微镜通过为生物系统中的精细结构提供更高的横向和轴向分辨率,优于近场LP-CARS显微镜用于三维分子成像。

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