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Optimizing the time resolution of supercontinuum spectral interferometry

机译:优化超连续谱干涉仪的时间分辨率

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Single-shot supercontinuum spectral interferometry is a powerful technique for measuring transient refractive index changes. In principle, its time resolution is limited only by the available probe bandwidth. However, this assumes that the phase extraction has sufficient spectral resolution and that the probe spectral phase is exactly known. Using an analytical model for the spectral phase and amplitude modulation of a chirped probe pulse by a weak transient phase perturbation, we show how the probe chirp and spectral resolution determine the achievable time resolution. A simple, practical technique for precise in situ measurement of the probe spectral phase is described in detail, and the sensitivity of the extracted temporal phase profile to uncertainty in the probe spectral phase is demonstrated in numerical simulations. (C) 2016 Optical Society of America
机译:单次超连续谱干涉法是一种用于测量瞬态折射率变化的强大技术。原则上,其时间分辨率仅受可用探针带宽的限制。但是,这假设相位提取具有足够的光谱分辨率,并且探针光谱相位是确切已知的。使用分析模型通过弱瞬态相位扰动对a探针脉冲的频谱相位和幅度进行调制,我们展示了探针chi和频谱分辨率如何确定可实现的时间分辨率。详细介绍了一种简单实用的技术,用于精确原位测量探针光谱相位,并在数值模拟中证明了提取的时间相位轮廓对探针光谱相位不确定性的敏感性。 (C)2016美国眼镜学会

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