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Optimal coherent control of coherent anti-Stokes Raman scattering: Signal enhancement and background elimination

机译:相干抗斯托克斯拉曼散射的最佳相干控制:信号增强和背景消除

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摘要

The ability to enhance resonant signals and eliminate the non-resonant background is analyzed for coherent anti-Stokes Raman scattering (CARS). The analysis is done at a specific frequency as well as for broadband excitation using femtosecond pulse-shaping techniques. An appropriate objective functional is employed to balance resonant signal enhancement against non-resonant background suppression. Optimal enhancement of the signal and minimization of the background can be achieved by shaping the probe pulse alone while keeping the pump and Stokes pulses unshaped. In some cases analytical forms for the probe pulse can be found, and numerical simulations are carried out for other circumstances. It is found that a good approximate optimal solution for resonant signal enhancement in two-pulse CARS is a superposition of linear and arctangent-type phases for the pump. The well-known probe delay method is shown to be a quasi-optimal scheme for broadband background suppression. The results should provide a basis to improve the performance of CARS spectroscopy and microscopy.
机译:针对相干抗斯托克斯拉曼散射(CARS),分析了增强共振信号和消除非共振背景的能力。使用飞秒脉冲整形技术在特定频率以及宽带激励下进行分析。采用适当的目标功能来平衡共振信号增强与非共振背景抑制。信号的最佳增强和背景的最小化可以通过仅对探针脉冲进行整形,同时保持泵浦和斯托克斯脉冲不整形来实现。在某些情况下,可以找到探测脉冲的分析形式,并在其他情况下进行数值模拟。已经发现,用于两脉冲CARS中的共振信号增强的良好的近似最佳解决方案是泵的线性和反正切型相位的叠加。众所周知,探测延迟方法是用于宽带背景抑制的准最佳方案。该结果应为改善CARS光谱学和显微镜性能提供依据。

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