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Noncollinear optical parametric amplifier based femtosecond time-resolved transient fluorescence spectra: characterization and correction

机译:基于非共线光学参量放大器的飞秒时间分辨瞬态荧光光谱:表征和校正

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摘要

Spectral distortion frequently occurs in a recently developed femtosecond time-resolved fluorescence spectroscopy based on noncollinear optical parametric amplification, which would limit its applications if it is not treated appropriately. We report the mechanism for broadening and distortion of the amplified spectrum, and it was found that the amplified fluorescence spectral width and the corresponding pulse duration were limited by the uncertainty principle. We demonstrated that the nonuniform gain curve of nonlinear optical crystal in the wide spectral region is the main cause leading to the distorted spectrum. Theoretical analysis shows that by carefully adjusting the experimental parameters, such as propagation and noncollinear angles, the spectral fidelity can be achieved in a broad region. Moreover, we also proposed a method for retrieving the genuine spectrum from the distorted amplified spectrum by experimentally measuring the gain curve encoded in the spectrum of the parametric superfluorescence, which is collected during propagation at noncollinear angles the same as those for amplified fluorescence.
机译:在最近开发的基于非共线光学参量放大的飞秒时间分辨荧光光谱中,经常发生光谱畸变,如果不进行适当处理,将会限制其应用。我们报道了放大光谱变宽和失真的机理,发现放大荧光光谱宽度和相应的脉冲持续时间受到不确定性原理的限制。我们证明了非线性光学晶体在宽光谱范围内的增益增益曲线不均匀是导致光谱失真的主要原因。理论分析表明,通过仔细调整实验参数,例如传播角度和非共线角度,可以在较宽的区域内实现光谱保真度。此外,我们还提出了一种方法,通过实验测量在参量超荧光光谱中编码的增益曲线来从失真的放大光谱中检索真实光谱,该增益曲线是在传播过程中以与放大荧光相同的非共线角度收集的。

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