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Background free imaging in stimulated emission fluorescence microscopy

机译:在刺激发射荧光显微镜中的背景自由成像

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Recently, the pump-probe technique has found highly valued developments and applications in optical microscopy to study both labeled (fluorescence) and non-labeled (vibrational) for observation of cells and tissues. In this work, we use the mechanism of stimulated emission (SE) with dual frequency modulation to remove the large background signal that is originated from spontaneous emission. We have applied a high performance digital signal processing based lock-in detection for stimulated emission fluorescence microscopy. Critically, the pump beam is modulated at f(1) and the probe beam is at a different frequency, f(2), with the demodulation carried out at the sum of the two frequencies, (f(1);+;f(2)). In this way, the DC background is effectively removed. Note that the background is mainly attributed to the spontaneous emission of the pump beam, with modulated frequency f(1).
机译:最近,泵探针技术已经发现了光学显微镜的高度重视的发育和应用,以研究标记(荧光)和未标记的(振动),用于观察细胞和组织。 在这项工作中,我们使用刺激发射(SE)的机制来进行双频调制,以去除源自自发发射的大背景信号。 我们已经应用了基于高性能数字信号处理的锁定检测,用于受激发射荧光显微镜。 批判性地,泵浦光束在F(1)上调制,探针光束处于不同的频率f(2),在两个频率的总和下执行解调(F(1); +; f( 2))。 以这种方式,DC背景有效地移除。 注意,背景主要归因于泵浦光束的自发发射,具有调制频率f(1)。

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