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Picosecond pulses in deep ultraviolet (257.5 nm and 206 nm) and mid-IR produced by a high-power 100 kHz solid-state thin-disk laser

机译:深度紫外线(257.5nm和206nm)和Mid-IR中的PICOSECOND脉冲由高功率100kHz固态薄盘激光器产生

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We report on the generation of picosecond deep ultraviolet pulses at 257.5 nm and 206 nm produced as the fourth and fifth harmonic frequencies of the diode-pumped Yb∶YAG thin-disk laser at the fundamental wavelength of 1030 nm. We present a proposal for a picosecond pulse mid-IR source tunable between 2 and 3 μm. The laser at the fundamental wavelength is based on a chirped-pulse amplification of pulses of a sub-ps laser oscillator in a regenerative amplifier with a thin-disk active medium. The diode pumping at the zero phonon line is used. The output beam is close to the fundamental spatial mode and the pulses are characterized by a 100 kHz repetition frequency, less than 4 ps pulse duration and ≤1 mJ pulse energy. The fundamental beam is split and the main part is first frequency doubled in an LBO crystal. Subsequently the fourth harmonic frequency (257.5 nm) is produced by frequency doubling of the second harmonic frequency in BBO/CLBO crystals. The remaining part of the fundamental beam is summed with the fourth harmonic beam in the 1ω+4ω quantum reaction in a further CLBO crystal for the fifth harmonic frequency (206 nm) production. The design for the generation of the mid-IR wavelengths is based on the optical parametric generation and amplification. The first stage contains a temperature tuned PPLN, the following amplification stages are based on KTA crystals tuned by angle. Picosecond output pulses tunable between 2 and 3 μm at an average power of 10 W are proposed.
机译:我们报告了257.5nm和206nm的二十秒深紫外脉冲的产生,作为二极管泵送的Yb:yag薄圆盘激光器的第四和第五谐波频率,在1030nm的基本波长下产生。我们提出了一个关于PicoSecond脉冲MID-IR源在2到3μm之间的提案。基本波长处的激光基于具有薄磁盘有源介质的再生放大器中的子PS激光振荡器的脉冲的啁啾脉冲放大。使用在零位线处泵送的二极管。输出光束接近基本空间模式,并且脉冲的特征在于100kHz重复频率,小于4ps脉冲持续时间和≤1MJ脉冲能量。基本光束分开,主要部分是LBO晶体中的第一频率加倍。随后,第四谐波频率(257.5nm)由BbO / Clbo晶体中的第二谐波频率的频率加倍产生。基本光束的剩余部分与在进一步的CLBO晶体中的1Ω+4Ω量子反应中的第四谐波梁求和为第五谐波频率(206nm)生产。用于生成MID-IR波长的设计基于光学参数生成和放大。第一阶段包含温度调谐的PPLN,下列扩增阶段基于由角度调谐的KTA晶体。提出了在10W的平均功率下调谐2和3μm之间的PICOSECOND输出脉冲。

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