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Multi-gigahertz femtosecond Airy beam optical parametric oscillator pumped at 78 MHz

机译:泵浦频率为78 MHz的千兆赫兹飞秒艾里光束光学参量振荡器

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摘要

We report a high power ultrafast Airy beam source producing femtosecond pulses at multi-gigahertz (GHz) repetition rate (RR). Based on intra-cavity cubic phase modulation of an optical parametric oscillator (OPO) designed in high harmonic cavity configuration synchronous to a femtosecond Yb-fiber laser operating at 78 MHz, we have produced ultrafast 2D Airy beam at multi-GHz repetition rate through the fractional increment in the cavity length. While small (<1 mm) crystals are used in femtosecond OPOs to take the advantage of broad phase-matching bandwidth, here, we have exploited the extended phase-matching bandwidth of a 50-mm long Magnesium-oxide doped periodically poled LiNbO3 (MgO:PPLN) crystal for efficient generation of ultrafast Airy beam and broadband mid-IR radiation. Pumping the MgO:PPLN crystal of grating period, Λ = 30 μm and crystal temperature, T = 100 °C using a 5-W femtosecond laser centred at 1064 nm, we have produced Airy beam radiation of 684 mW in ~639 fs (transform limited) pulses at 1525 nm at a RR of ~2.5 GHz. Additionally, the source produces broadband idler radiation with maximum power of 510 mW and 94 nm bandwidth at 3548 nm in Gaussian beam profile. Using an indirect method (change in cavity length) we estimate maximum RR of the Airy beam source to be ~100 GHz.
机译:我们报告了一个高功率超快艾里光束源,它以几千兆赫(GHz)的重复频率(RR)产生飞秒脉冲。基于以高谐波腔配置设计的光参量振荡器(OPO)的腔内立方相位调制,并与工作在78 MHz的飞秒Yb光纤激光器同步,我们通过以下方法产生了以GHz为重复频率的超快二维Airy光束:空腔长度的分数增量。飞秒OPO中使用小的(<1 mm)晶体来利用宽相位匹配带宽的优势,但在这里,我们利用了50mm长的氧化镁掺杂的周期性极化LiNbO3(MgO :PPLN)晶体,可有效产生超快的艾里光束和宽带中红外辐射。使用中心为1064 nm的5W飞秒激光泵浦光栅周期为Λ= 30μm和晶体温度T = 100°C的MgO:PPLN晶体,我们产生了约639 fs的684 mW的艾里光束辐射(变换有限)在1525 nm处的脉冲,RR约为2.5 GHz。此外,在高斯光束分布图中,该光源产生的宽带惰轮辐射的最大功率为510 mW,在3548 nm处的带宽为94 nm。使用间接方法(腔长变化),我们估计艾里光束源的最大RR为〜100〜GHz。

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