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利用目录透镜组件在多模态非线性显微镜中实现紫外信号检测。

Enabling the detection of UV signal in multimodal nonlinear microscopy with catalogue lens components.

作者信息

Vogel Martin, Wingert Axel, Fink Rainer H A, Hagl Christian, Ganikhanov Feruz, Pfeffer Christian P

机构信息

Center for Nanoscale Systems, Harvard University, Cambridge, Massachusetts, U.S.A.

Medical Biophysics Group, University of Heidelberg, Heidelberg, Germany.

出版信息

J Microsc. 2015 Oct;260(1):62-72. doi: 10.1111/jmi.12267. Epub 2015 May 27.

Abstract

Using an optical system made from fused silica catalogue optical components, third-order nonlinear microscopy has been enabled on conventional Ti:sapphire laser-based multiphoton microscopy setups. The optical system is designed using two lens groups with straightforward adaptation to other microscope stands when one of the lens groups is exchanged. Within the theoretical design, the optical system collects and transmits light with wavelengths between the near ultraviolet and the near infrared from an object field of at least 1 mm in diameter within a resulting numerical aperture of up to 0.56. The numerical aperture can be controlled with a variable aperture stop between the two lens groups of the condenser. We demonstrate this new detection capability in third harmonic generation imaging experiments at the harmonic wavelength of ∼300 nm and in multimodal nonlinear optical imaging experiments using third-order sum frequency generation and coherent anti-Stokes Raman scattering microscopy so that the wavelengths of the detected signals range from ∼300 nm to ∼660 nm.

摘要

利用由熔融石英目录光学元件制成的光学系统,在传统的基于钛宝石激光器的多光子显微镜设置上实现了三阶非线性显微镜。该光学系统由两个透镜组设计而成,当其中一个透镜组更换时,可直接适配其他显微镜支架。在理论设计中,该光学系统在高达0.56的数值孔径范围内,收集并传输直径至少为1毫米的物场中近紫外到近红外波长的光。数值孔径可通过聚光镜两个透镜组之间的可变孔径光阑进行控制。我们在约300纳米的谐波波长的三次谐波产生成像实验以及使用三阶和频产生和相干反斯托克斯拉曼散射显微镜的多模态非线性光学成像实验中展示了这种新的检测能力,以便检测信号的波长范围从约300纳米到约660纳米。

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