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Study of improving signal-noise ratio for fluorescence channel

机译:提高荧光通道信噪比的研究

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Laser-induced fluorescence(LIFS), which is one of most effective discrimination methods to identify the material at the molecular level by inducing fluorescence spectrum, has been popularized for its fast and accurate probe's results. According to the research, violet laser or ultraviolet laser is always used as excitation light source. While, There is no atmospheric window for violet laser and ultraviolet laser, causing laser attenuation along its propagation path. What's worse, as the laser reaching sample, part of the light is reflected. That is, excitation laser really react on sample to produce fluorescence is very poor, leading to weak fluorescence mingled with the background light collected by LIFS' processing unit, when it used outdoor. In order to spread LIFS to remote probing under the complex background, study of improving signal-noise ratio for fluorescence channel is a meaningful work. Enhancing the fluorescence intensity and inhibiting background light both can improve fluorescence' signal-noise ratio. In this article, three different approaches of inhibiting background light are discussed to improve the signal-noise ratio of LIFS. The first method is increasing fluorescence excitation area in the proportion of LIFS' collecting field by expanding laser beam, if the collecting filed is fixed. The second one is changing field angle base to accommodate laser divergence angle. The third one is setting a very narrow gating circuit to control acquisition circuit, which is shortly open only when fluorescence arriving. At some level, these methods all can reduce the background light. But after discussion, the third one is best with adding gating acquisition circuit to acquisition circuit instead of changing light path, which is effective and economic.
机译:激光诱导荧光(LIFS)是一种通过诱导荧光光谱在分子水平上鉴定材料的最有效的判别方法之一,以其快速,准确的探针检测结果而广受欢迎。根据研究,紫激光或紫外激光一直被用作激发光源。同时,没有紫激光和紫外激光的大气窗口,导致激光沿其传播路径衰减。更糟糕的是,随着激光到达样品,部分光被反射。也就是说,激发激光在样品上产生的荧光反应非常差,导致在户外使用时,LIFS的处理单元收集到的背景光会混入微弱的荧光。为了将LIFS传播到复杂背景下的远程探测中,提高荧光通道信噪比的研究是一项有意义的工作。增强荧光强度和抑制背景光都可以提高荧光的信噪比。本文讨论了三种抑制背景光的方法,以提高LIFS的信噪比。第一种方法是,如果收集场是固定的,则通过扩大激光束在LIFS收集场的比例中增加荧光激发面积。第二个是改变视场角以适应激光发散角。第三个是设置一个非常狭窄的门控电路来控制采集电路,该电路仅在荧光到达时才打开。在某种程度上,这些方法都可以减少背景光。但是经过讨论,第三个最好是在采集电路中增加门控采集电路而不是改变光路,这是有效且经济的。

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