Adams Daniel E, Planchon Thomas A, Hrin Alexander, Squier Jeff A, Durfee Charles G
Department of Physics, Colorado School of Mines, Golden, Colorado, 80401, USA.
Opt Lett. 2009 May 1;34(9):1294-6. doi: 10.1364/ol.34.001294.
We use collinear spatially resolved spectral interferometery to characterize the nonlinear phase changes experienced by an intense ultrashort pulse propagating in glass. The measurement yields the spectrally dependent wavefront, allowing us to measure the spatial and chromatic aberrations of the nonlinearly induced lens. For these conditions, we find that while the shape of the spatial wavefront follows the beam profile as expected, the spectral dependence of the lensing power is determined by the self-phase modulation. The simultaneous measurement of the nonlinear spatiospectral phase demonstrates how the nonlinear spectral phase is coupled to self-focusing.
我们使用共线空间分辨光谱干涉术来表征强超短脉冲在玻璃中传播时所经历的非线性相位变化。该测量可得到光谱相关的波前,使我们能够测量非线性诱导透镜的空间和色差。在这些条件下,我们发现虽然空间波前的形状如预期的那样跟随光束轮廓,但透镜光焦度的光谱依赖性由自相位调制决定。非线性时空光谱相位的同时测量展示了非线性光谱相位如何与自聚焦相耦合。