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High-Intensity Nanosecond All-Fiber-Coiled Laser and Extreme Ultraviolet Generation

机译:高强度纳秒全光纤线圈激光器和极紫外光产生

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High-efficiency fiber-based extreme ultraviolet driver in the alignment-free configuration has been experimentally achieved with a maximum intensity of 6.4×10~(10) W/cm~2 on target at a repetition rate of 20 kHz. The output EUV signal within 10-20 nm in wavelength was confirmed with a Si/Zr-coated x-ray photodiode by varying numbers of Be and Al foil filters. The measured spectral range is consistent with that obtained by the weighted oscillator strengths of Sn~(8+) to Sn~(+13) ions using an one-dimensional hydrodynamic code coupled with the ionization model of collisional-radiative equilibrium. The driver is based on a 1064-nm nanosecond coiled ytterbium all-fiber laser system in diode-seeded master oscillator power amplification. With an overall optical efficiency up to 56%, it can deliver a 1.16-mJ, 117-kW, 6.1-ns laser pulses with a FWHM linewidth of 10 nm and beam propagation factor of M~2~1.55. The full advantages of using fiber laser for a movable LPP EUV metrology source are revealed.
机译:实验上已经实现了无取向配置的高效纤维基极紫外驱动器,其目标上的最大强度为6.4×10〜(10)W / cm〜2,重复频率为20 kHz。通过改变数量的Be和Al箔滤光片,用涂有Si / Zr的x射线光电二极管确认了波长在10-20 nm之内的输出EUV信号。测得的光谱范围与使用一维流体动力学代码和碰撞辐射平衡的电离模型耦合的Sn〜(8+)到Sn〜(+13)离子的加权振荡器强度所获得的光谱范围一致。该驱动器基于一个1042纳米纳秒级线圈绕coil全光纤激光系统,该系统具有二极管植入的主振荡器功率放大功能。它的整体光效率高达56%,可发出1.16 mJ,117 kW,6.1 ns的激光脉冲,FWHM线宽为10 nm,光束传播因子为M〜2〜1.55。揭示了使用光纤激光器作为可移动LPP EUV计量源的全部优势。

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