超短脉冲
光纤激光器
光学
材料科学
钛宝石激光器
激光器
光电子学
多模光纤
飞秒
皮秒
光子晶体光纤
光纤
计算机科学
蓝宝石
物理
作者
Walter Fu,Logan G. Wright,Pavel Sidorenko,Sterling Backus,Frank W. Wise
出处
期刊:Optics Express
[The Optical Society]
日期:2018-04-02
卷期号:26 (8): 9432-9432
被引量:169
摘要
Ultrafast fiber lasers have the potential to make applications of ultrashort pulses widespread - techniques not only for scientists, but also for doctors, manufacturing engineers, and more. Today, this potential is only realized in refractive surgery and some femtosecond micromachining. The existing market for ultrafast lasers remains dominated by solid-state lasers, primarily Ti:sapphire, due to their superior performance. Recent advances show routes to ultrafast fiber sources that provide performance and capabilities equal to, and in some cases beyond, those of Ti:sapphire, in compact, versatile, low-cost devices. In this paper, we discuss the prospects for future ultrafast fiber lasers built on new kinds of pulse generation that capitalize on nonlinear dynamics. We focus primarily on three promising directions: mode-locked oscillators that use nonlinearity to enhance performance; systems that use nonlinear pulse propagation to achieve ultrashort pulses without a mode-locked oscillator; and multimode fiber lasers that exploit nonlinearities in space and time to obtain unparalleled control over an electric field.
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