Center for Microintegrated Optics for Advanced Bioimaging and Control, Department of Physics,Colorado School of Mines, 1523 Illinois Street, Golden, Colorado 80401, USA.
Opt Lett. 2010 Oct 15;35(20):3369-71. doi: 10.1364/OL.35.003369.
We use a unique multifocal multiphoton microscope to directly characterize the pulse in the focal plane of a high-NA objective using second-harmonic generation frequency-resolved optical gating (FROG). Because of the nature of the optical setup, femtosecond laser pulses of orthogonal polarization states are generated in the focal plane, each acquiring a different spectral dispersion. By applying an additional constraint on the phase extraction algorithm, we simultaneously extract both the gate and probe pulses from a single spectrogram with a FROG error of 0.016.
我们使用独特的多焦点多光子显微镜,通过二次谐波频率分辨光学门(FROG)技术,直接对高数值孔径物镜焦平面中的脉冲进行特性描述。由于光学设置的性质,在焦平面中产生了正交偏振态的飞秒激光脉冲,它们各自获得不同的光谱色散。通过对相位提取算法施加额外的约束条件,我们可以从单个光谱图中同时提取门脉冲和探测脉冲,其 FROG 误差为 0.016。