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Few-cycle all-fiber temporally coherent supercontinuum sources

机译:少循环全纤维时间相干超强素源

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We present a monolithic fiber optic configuration for generating temporally coherent supercontinuum (SC) pulsed emission with the shortest pulse duration presented to date, to our knowledge, by an all-fiber source. Few-cycle pulses as short as 14.8 fs are obtained, with central emission wavelength of 1060 nm, repetition rate of 75 MHz and average power of 250 mW. The SC generation is obtained by pumping an all-normal dispersion (ANDi) photonic crystal fiber (PCF) with a mode-locked Yb fiber laser. Spectral broadening by self-phase modulation preserves compressible pulses in the temporal domain. Compared to previously reported configurations exploiting ANDi PCFs, all stages of our source are fiber based and fiber coupled between them. Avoidance of free-space propagation between stages confers unequalled robustness, efficiency and cost-effectiveness to this novel configuration. The ANDi PCF was designed and produced to provide a convex, flat-top dispersion curve with group velocity dispersion comprised between -20 and 0 ps/nm/km in the wavelength range from 900 to 1200 nm. A d-scan system was designed and built to compress and characterize the pulses. The spectrum, wider than 150 nm, supports a Fourier limit pulse duration of 13.7 fs, and pulses have been actually compressed down to 14.8 fs, which demonstrates a high level of temporal coherence in the achieved supercontinuum; second- and third-order dispersion of the pulses are measured as low as -145 fs~2 and 875 fs~3, respectively. The source has been integrated in a two-photon fluorescence and second-harmonic generation microscopy setup, where 3D images of biological samples have been successfully obtained.
机译:我们介绍了一种单片光纤配置,用于通过全光纤源向我们所知的最短脉冲持续时间产生时间相干的超连续(SC)脉冲发射。获得短至14.8fs的几个循环脉冲,中央发射波长为1060nm,重复率为75MHz,平均功率为250mW。通过用模式锁定的YB光纤激光器泵送全正常分散(ANDI)光子晶体纤维(PCF)来获得SC生成。通过自相调制的光谱展现在时间域中保留了可压缩脉冲。与先前报道的配置相比,利用ANDI PCFS,我们的来源的所有阶段都是基于光纤的光纤和光纤。避免阶段之间的自由空间传播赋予这种新颖配置的无与伦比的鲁棒性,效率和成本效益。设计和制造ANDI PCF以提供凸形的平顶分散曲线,其中波长范围为-20至1200nm的波长范围为-20和0 ps / nm / km。设计和构建D扫描系统以压缩和表征脉冲。宽于150nm的频谱支持傅里叶极限脉冲持续时间为13.7fs,并且实际上已经压缩至14.8fs,这证明了达到的超连续的高水平的时间相干性;脉冲的第二阶和三阶分散分别测量为低至-145 fs〜2和875 fs〜3。源已经集成在双光子荧光和二次谐波产生显微镜设置中,其中已经成功获得了生物样品的3D图像。

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