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Two-dimensional spectral shearing interferometry for few-cycle pulse characterization

机译:二维光谱剪切干涉仪,用于小周期脉冲表征

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We present a new method for measuring the spectral phase of ultrashort pulses that utilizes spectral shearing interferometry with zero delay. Unlike conventional spectral phase interferometry for direct electric-field reconstruction, which encodes phase as a sensitively calibrated fringe in the spectral domain, two-dimensional spectral shearing interferometry robustly encodes phase along a second dimension. This greatly reduces demands on the spectrometer and allows for complex phase spectra to be measured over extremely large bandwidths, potentially exceeding 1.5 octaves. (c) 2006 Optical Society of America.
机译:我们提出了一种新的测量超短脉冲频谱相位的方法,该方法利用零延迟的频谱剪切干涉法。与用于直接电场重建的常规频谱相位干涉测量法不同,传统的频谱相位干涉测量法将相位编码为频谱域中的敏感校准条纹,而二维频谱剪切干涉测量法则沿第二维稳健地编码相位。这大大降低了对光谱仪的需求,并允许在非常大的带宽(可能超过1.5个八度)上测量复杂的相位谱。 (c)2006年美国眼镜学会。

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