首页> 外文会议>Conference on Multiphoton Microscopy in the Biomedical Sciences IV; 20040125-20040127; San Jose,CA; US >Fluorescence light suppression in Raman Spectroscopy using ultrafast time gated CCD camera
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Fluorescence light suppression in Raman Spectroscopy using ultrafast time gated CCD camera

机译:超快时间门控CCD相机在拉曼光谱中抑制荧光

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A high level of fluorescence background signal rejection was achieved for solid and powder samples by using a combination of simple low-resolution spectrograph and ultrafast intensified/gated CCD camera. The unique timing characteristics of CCD camera match exceptionally well characteristics of Ti:sapphire oscillator allowing fast gated light detection at a repetition rate of up to 110 MHz, making this approach superior in terms of duty cycle in comparison with other time-resolved Raman techniques. The achieved temporal resolution was about 150 ps under 785 nm Ti:sapphire laser excitation. At an average excitation power up to 300 mW there was no noticeable sample damage observed. The strong Hexobenzocoronane (HBC) fluorescence with a lifetime about 2.1 ns was efficiently rejected and Raman spectrum revealed. The combination of spectrometer and ultrafast gated CCD camera allows simultaneous study of spectral and temporal characteristics of emitted light for the fluorophores with a fluorescence lifetime in nanosecond range. It is particularly important in biomedical spectroscopy, since the majority of endogenous fluorophores has a relatively short lifetime of about 1-5 ns. This capability opens an exciting possibility to build a universal instrument for solving multitask problems in applied laser spectroscopy.
机译:通过使用简单的低分辨率光谱仪和超快增强/门控CCD相机的组合,可以对固体和粉末样品实现高水平的荧光背景信号抑制。 CCD相机的独特定时特性与Ti:蓝宝石振荡器的出色特性相匹配,从而可以以高达110 MHz的重复频率进行快速选通光检测,与其他时间分辨拉曼技术相比,该方法在占空比方面更为出色。在785 nm Ti:蓝宝石激光激发下,获得的时间分辨率约为150 ps。在高达300 mW的平均激发功率下,没有观察到明显的样品损坏。使用寿命约2.1 ns的强六六六六六六六六六(HBC)荧光被有效地排斥,并显示出拉曼光谱。光谱仪和超快门控CCD相机的组合可同时研究荧光团的发射光的光谱和时间特性,其荧光寿命在纳秒范围内。这在生物医学光谱学中尤其重要,因为大多数内源性荧光团的寿命相对较短,约为1-5 ns。这种能力为构建通用仪器解决了应用激光光谱中的多任务问题提供了令人兴奋的可能性。

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