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GHz repetition-rate femtosecond sources with desired repetition-rate and wavelength

机译:具有所需重复率和波长的GHz重复率飞秒源

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In this talk, we will review our recent works about the GHz-repetition-rate (GRR) femtosecond lasers. These works make GRR femtosecond lasers more flexible in the manipulation of pulse repetition-rate and the operating wavelength. We first demonstrate a phase insensitive way to multiply the repetition-rate of a passive mode-locked laser in femtosecond regime. By inserting an intracavity flat surface with low reflectivity, we multiplied the repetition-rate of a femtosecond Cr:forsterite laser by ten times. It provides a simple and stable way to modify MHz-repetition-rate femtosecond lasers into GRR lasers. To achieve desired wavelength, which can't be directly generated by a gain medium, nonlinear conversion is required. But for GRR femtosecond lasers, the efficiency of single-pass conversion is low due to its low pulse energy. In order to increase the yield, we adopt the method of resonant-enhanced external cavity. With a resonant cavity matched to a 2-GHz repetition-rate Ti:sapphire laser, we demonstrated a high power femtosecond blue source at 2-GHz repetition-rate.
机译:在本次演讲中,我们将回顾我们有关GHz重复频率(GRR)飞秒激光器的最新工作。这些工作使GRR飞秒激光器在脉冲重复频率和工作波长的控制上更加灵活。我们首先展示了一种相位不敏感方式,可以在飞秒范围内增加无源锁模激光器的重复率。通过插入低反射率的腔内平面,我们将飞秒Cr:镁橄榄石激光器的重复率提高了十倍。它提供了一种简单稳定的方法,可将MHz重复频率飞秒激光器修改为GRR激光器。为了获得所需的波长(增益介质无法直接产生该波长),需要进行非线性转换。但是对于GRR飞秒激光器,由于其低脉冲能量,单次转换的效率很低。为了提高产量,我们采用了共振增强外腔的方法。通过与2 GHz重复频率的Ti:蓝宝石激光器匹配的谐振腔,我们展示了2 GHz重复频率的高功率飞秒蓝光源。

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