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Wavefront autocorrelation of femtosecond laser beams

机译:飞秒激光束的波前自相关

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Spatially resolved wavefront sensing and time-resolved autocorrelation measurement of ultrashort pulses are usually separated procedures. For few-cycle pulses with significant spatial inhomogeneities and poor beam quality, a fully spatio-temporal beam characterization is necessary. Here we report on a new concept for a joint two-dimensional mapping of local temporal coherence and local wavefront tilt based on the combination of collinear autocorrelation and Shack-Hartmann wavefront sensing. Essentially for this "wavefront autocorrelation" is a splitting of the beam into a matrix of Bessel-like sub-beams by an array of thin-film microaxicons. The sub-beams are further processed by a two-dimensional collinear autocorrelation setup. The second harmonic distribution of sub-beams at a defined distance is imaged onto a CCD camera. The nondiffractive sub-beams ensure an extended depth of focus and a low sensitivity towards angular misalignment or axial displacement. With low-dispersion small-angle refractive-reflective shapers, wavefront-sensing of Ti:sapphire laser wavepackets was demonstrated experimentally for the first time.
机译:空间解决的波前感应和时间解决的超短脉冲的自相关测量通常是分开的程序。对于具有显着的空间不均匀性和光束质量差的少循环脉冲,需要完全的时空光束表征。在这里,我们报告了基于Consear自相关和Shack-Hartmann波前感的组合的本地时间相干和局部波前倾斜的联合二维映射的新概念。基本上,对于这种“波前自相关”是通过薄膜微轴器阵列将光束分成束状子光束的矩阵。通过二维共线自相关设置进一步处理子光束。在限定距离处的子梁的第二谐波分布在CCD相机上成像。不合束的子束确保延长深度的焦深和对角度未对准或轴向位移的低灵敏度。具有低分散的小角折射反光轮廓,TI的波前感:第一次通过实验证明蓝宝石激光波波皮。

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