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Pulse-to-pulse wavelength switching of diode based fiber laser for multi-color multi-photon imaging

机译:基于二极管的光纤激光器的脉冲到脉冲波长切换,用于多色多光子成像

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We present an entirely fiber based laser source for non-linear imaging with a novel approach for multi-color excitation. The high power output of an actively modulated and amplified picosecond fiber laser at 1064 nm is shifted to longer wavelengths by a combination of four-wave mixing and stimulated Raman scattering. By combining different fiber types and lengths, we control the non-linear wavelength conversion in the delivery fiber itself and can switch between 1064 nm, 1122 nm, and 1186 nm on-the-fly by tuning the pump power of the fiber amplifier and modulate the seed diodes. This is a promising way to enhance the applicability of short pulsed laser diodes for bio-molecular non-linear imaging by reducing the spectral limitations of such sources. In comparison to our previous work [1,2], we show for the first time two-photon imaging with the shifted wavelengths and we demonstrate pulse-to-pulse switching between the different wavelengths without changing the configuration.
机译:我们提出了一种用于非线性成像的完全基于光纤的激光源,并采用了一种用于多色激发的新颖方法。主动调制和放大的皮秒光纤激光器在1064 nm处的高功率输出通过四波混频和受激拉曼散射的组合转移到更长的波长。通过组合不同类型和长度的光纤,我们可以控制传输光纤本身的非线性波长转换,并可以通过调整光纤放大器的泵浦功率来即时在1064 nm,1122 nm和1186 nm之间切换。种子二极管。通过减少此类光源的光谱限制,这是增强短脉冲激光二极管对生物分子非线性成像的适用性的一种有前途的方式。与我们以前的工作[1,2]相比,我们首次展示了具有位移波长的双光子成像,并展示了在不改变配置的情况下不同波长之间的脉冲间切换。

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