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Supercontinuum generation in single crystal sapphire fibers

机译:单水晶蓝宝石纤维的超连续素生成

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摘要

Novel supercontinuum generation by launching ultra-short femtosecond laser pulses into single crystal sapphire fibers is demonstrated. Supercontinuum generation using sapphire fiber exhibits many advantages that include high transparency up to 5 micron, low material dispersion in the 0.8 micron to 5 micron spectral range, and an extremely high laser damage threshold (500 times higher than that of silica). Thus, supercontinuum spectrum with high power, super broadband, and spatial coherence can be realized by pumping single crystal sapphire fibers. By experimental comparison, we prove that sapphire fiber can provide a broader supercontinuum spectrum than that of bulk sapphire counterpart under the same exciting conditions. Since supercontinuum generation in single crystal sapphire fibers can radiate high power supercontinuum in the middle-IR regime, it will have a great impact on many applications, including sensing and broadband multi-spectrum free space communications.
机译:通过发射超短飞秒激光脉冲进入单晶蓝宝石纤维的新型超连续素。使用蓝宝石光纤的超连续产生具有许多优点,包括高达5微米,在0.8微米至5微米谱范围内的高透明度,低质材料分散,以及极高的激光损伤阈值(比二氧化硅高500倍)。因此,通过泵送单晶蓝宝石纤维,可以实现具有高功率,超宽带和空间相干性的超高度谱。通过实验比较,我们证明了蓝宝石纤维可以在相同的激动条件下提供比散装蓝宝石对应的更广泛的超高度光谱。由于单晶蓝宝石纤维中的超连续生成可以在中红外政权中辐射高功率超连续性,因此它将对许多应用产生很大影响,包括传感和宽带多频谱空间通信。

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