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用于激光产生氙等离子体软X射线的圆柱形收集镜的特性及通过缓冲气体提高镜寿命

Characteristics of a cylindrical collector mirror for laser-produced xenon plasma soft X-rays and improvement of mirror lifetime by buffer gas.

作者信息

Inoue Tomoaki, Mochizuki Takayasu, Miyamoto Shuji, Masuda Kazuya, Amano Sho, Kanda Kazuhiro

机构信息

Laboratory of Advanced Science and Technology for Industry, University of Hyogo, 3-1-2 Kouto, Kamigori, Ako-gun, Hyogo 678-1205, Japan.

出版信息

Rev Sci Instrum. 2012 Dec;83(12):123110. doi: 10.1063/1.4770328.

Abstract

The focusing characteristics of a ruthenium-coated cylindrical mirror were investigated on the basis of its ability to collect and focus broadband 5-17-nm soft X-rays emitted from a laser-produced plasma. Based on the plasmas spectral intensity distribution and the reflectivity function of the mirror, we defined the optimum position of the integrated cylindrical mirror at which the X-ray energy flux transported and focused through the mirror was maximum. A minimum spot diameter of 22 mm at a distance of approximately 200 mm from a soft X-ray source was confirmed. The maximum intensity of the collected soft X-rays was 1.3 mJ/cm(2) at the center of the irradiation zone. Thus, the irradiation intensity was improved by approximately 27 times when compared to that of 47 μJ/cm(2) without the mirror. The debris sputtering rate on the reflection surface of the mirror can be reduced to 1/110 by argon gas at 11 Pa, while the attenuation rate of the soft X-rays due to absorption by the buffer gas can be suppressed to less than 10% at the focal point. The focusing property of the mirror is expected to be maintained for 3000 h or longer without significant degradation for a 100 W/320 pps laser shot if the ruthenium layer is thicker than 10 μm. These results suggest that a stand-alone broadband soft X-ray processing system can be realized by using laser-produced plasma soft X-rays.

摘要

基于镀钌柱面镜收集和聚焦激光产生等离子体发出的5-17纳米宽带软X射线的能力,对其聚焦特性进行了研究。根据等离子体光谱强度分布和该镜的反射率函数,我们确定了集成柱面镜的最佳位置,在该位置通过该镜传输和聚焦的X射线能量通量最大。证实了在距软X射线源约200毫米处的最小光斑直径为22毫米。在辐照区中心收集到的软X射线的最大强度为1.3毫焦/平方厘米。因此,与没有该镜时的47微焦/平方厘米相比,辐照强度提高了约27倍。在11帕的氩气环境下,镜反射面上的碎片溅射率可降低至1/110,而在焦点处,缓冲气体吸收导致的软X射线衰减率可抑制至低于10%。如果钌层厚度大于10微米,对于100瓦/320脉冲每秒的激光脉冲,预计该镜的聚焦特性可保持3000小时或更长时间而无明显退化。这些结果表明,利用激光产生的等离子体软X射线可以实现一个独立的宽带软X射线处理系统。

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