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首页> 外文期刊>Optics Letters >Compression of fiber supercontinuum pulses to the Fourier-limit in a high-numerical-aperture focus
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Compression of fiber supercontinuum pulses to the Fourier-limit in a high-numerical-aperture focus

机译:在高数值孔径焦点中将光纤超连续谱脉冲压缩到傅立叶极限

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摘要

A multiphoton intrapulse interference phase scan (MIIPS) adaptively and automatically compensates the combined phase distortion from a fiber supercontinuum source, a spatial light modulator pulse shaper, and a high-NA microscope objective, allowing Fourier-transform-limited compression of the supercontinuum pulses at the focus of the objective. A second-harmonic-generation-based method is employed to independently validate the transform-limited compression. The compressed pulses at the focus of the objective have a tunable duration of 10.8-38.9fs (FWHM), a central wavelength of approx1020nm, an average power of 18-70mW, and a repetition rate of 76 MHz, permitting the application of this source to nonlinear optical microscopy and coherently controlled microspectroscopy.
机译:多光子脉冲内干涉相位扫描(MIIPS)可以自适应地自动补偿来自光纤超连续谱源,空间光调制器脉冲整形器和高NA显微镜物镜的组合相位畸变,从而允许在200nm处对超连续谱脉冲进行傅里叶变换限制目标的重点。采用基于第二谐波产生的方法来独立验证变换限制的压缩。物镜焦点处的压缩脉冲具有10.8-38.9fs(FWHM)的可调持续时间,大约1020nm的中心波长,18-70mW的平均功率以及76 MHz的重复频率,因此可以使用此光源非线性光学显微镜和相干控制显微镜。

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