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首页> 外文期刊>IEEE journal of selected topics in quantum electronics >Enhanced Self-Phase Modulation Enables a 700–900 nm Linear Compressible Continuum for Multicolor Two-Photon Microscopy
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Enhanced Self-Phase Modulation Enables a 700–900 nm Linear Compressible Continuum for Multicolor Two-Photon Microscopy

机译:增强的自相位调制实现了多色两光子显微镜的700–900 nm线性可压缩连续峰

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摘要

The spectral band of 100-fs pulses limits its simultaneous and efficient excitation in multicolor two-photon microscopy. By pumping the pulses from the 100-fs Ti:Sapphire oscillator through the highly nonlinear photonic crystal fiber, we demonstrate that a 700–900 nm linear compressible continuum can be generated due to enhanced self-phase modulation. Such a continuum is linearly compressed to 57 fs at the objective focus by a grating pair. The two-photon imaging of three-color labeled bovine pulmonary artery endothelial cells shows that the compressed continuum not only simultaneously excites the three fluorescent dyes, but also enhances the signal over 20 times compared with that of uncompressed case. This study shows its potential to promote the fluorescence signal level by using fiber continuum in multicolor two-photon microscopy.
机译:100 fs脉冲的光谱带限制了其在多色双光子显微镜中的同时高效激发。通过将100-fs Ti:蓝宝石振荡器中的脉冲通过高度非线性的光子晶体光纤泵浦,我们证明了由于增强的自相位调制可以产生700-900 nm的线性可压缩连续体。这样的连续体被光栅对在物镜焦点处线性压缩到57fs。经三色标记的牛肺动脉内皮细胞的双光子成像显示,压缩的连续谱不仅与三种压缩染料同时激发,而且与未压缩的情况相比,信号增强了20倍。这项研究显示了其在多色两光子显微镜中通过使用纤维连续体来促进荧光信号水平的潜力。

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