激光器
极端紫外线
光学
极紫外光刻
波长
材料科学
等离子体
能量转换效率
紫外线
激光功率缩放
光电子学
物理
量子力学
作者
Lars Behnke,Ruben Schupp,Zoi Bouza,Muharrem Bayraktar,Z. Mazzotta,Randy A. Meijer,John Sheil,Stefan Witte,W. Ubachs,R. Hoekstra,O. O. Versolato
出处
期刊:Optics Express
[Optica Publishing Group]
日期:2021-01-28
卷期号:29 (3): 4475-4475
被引量:37
摘要
An experimental study of laser-produced plasmas is performed by irradiating a planar tin target by laser pulses, of 4.8 ns duration, produced from a KTP-based 2-µm-wavelength master oscillator power amplifier. Comparative spectroscopic investigations are performed for plasmas driven by 1-µm- and 2-µm-wavelength pulsed lasers, over a wide range of laser intensities spanning 0.5 − 5 × 10 11 W/cm 2 . Similar extreme ultraviolet (EUV) spectra in the 5.5–25.5 nm wavelength range and underlying plasma ionicities are obtained when the intensity ratio is kept fixed at I 1µm / I 2µm = 2.4(7). Crucially, the conversion efficiency (CE) of 2-µm-laser energy into radiation within a 2% bandwidth centered at 13.5 nm relevant for industrial applications is found to be a factor of two larger, at a 60 degree observation angle, than in the case of the denser 1-µm-laser-driven plasma. Our findings regarding the scaling of the optimum laser intensity for efficient EUV generation and CE with drive laser wavelength are extended to other laser wavelengths using available literature data.
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