Gigaphoton Inc., Oyama, Japan.
Opt Lett. 2013 Mar 15;38(6):881-3. doi: 10.1364/OL.38.000881.
In this Letter we describe in more detail a solid-state seeded, nanosecond pulse, multiline CO(2) oscillator designed and built for the extreme ultraviolet (EUV) laser-produced-plasma (LPP) source. Our oscillator featured quantum cascade laser seeders, a diffraction-type seed beam combiner, and a radio-frequency-discharge-excited, diffusion-cooled, slab-waveguide CO(2) gain cell in a compact multipass regenerative amplifier configuration. The oscillator generated pulses of exceptional stability in terms of envelope, energy, and spectrum. Excellent stability of output was achieved without any additional techniques. The output spectrum consisted of two laser lines of a 00(0)1-10(0)0 band of a CO(2) molecule, P20 and P22, with a target of four lines P18-P24. The pulse duration was electronically adjustable between 11 and 35 ns at a repetition frequency from a few hertz to hundreds of kilohertz. Electronic adjustment of the pulse duration was achieved by relative timing offsets of individual seeders, opening an avenue to a range of on-line adjustments of pulse shape and spectral content timing. The jitter-tolerant operation allows for easy synchronization with an external event, such as a droplet target in an EUV LPP source. A resistance to parasitic seeding of more than 40 dB was recorded. The oscillator produced up to 20 W of average output power at a repetition rate of 100 kHz in a near-diffraction-limited beam of M(2)<1.3 and a pointing stability below 50 μrad.
在这封信件中,我们更详细地描述了一种固态种子、纳秒脉冲、多线 CO(2)振荡器,该振荡器专为极紫外 (EUV) 激光等离子体 (LPP) 源的量子级联激光种子器、衍射型种子光束组合器以及射频放电激励、扩散冷却、板波导 CO(2)增益单元设计和制造。该振荡器在脉冲的稳定性方面具有极好的性能,包括脉冲包络、能量和光谱。在不使用任何额外技术的情况下,实现了输出的极好稳定性。输出光谱由 CO(2)分子的 00(0)1-10(0)0 带的两条激光线 P20 和 P22 组成,目标是四条线 P18-P24。脉冲持续时间可以在 11 到 35 ns 之间通过电子方式进行调节,重复频率从几赫兹到几百千赫兹。通过单独种子器的相对定时偏移来实现脉冲持续时间的电子调节,从而开辟了一系列在线调节脉冲形状和光谱内容定时的途径。该振荡器具有抗抖动操作能力,允许与外部事件(例如 EUV LPP 源中的液滴目标)轻松同步。记录到的寄生种子抑制超过 40 dB。该振荡器在 100 kHz 的重复率下产生高达 20 W 的平均输出功率,光束质量因子 M(2)<1.3,指向稳定性低于 50 μrad。