Recent advances in development and application of laser plasma x-ray sources based on a gas puff target (Conference Presentation)

H. Fiedorowicz, P. Wachulak, A. Bartnik
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Abstract

Laser plasma sources of soft X-rays and extreme ultraviolet (EUV) have been developed for application in various fields of science and technology. The sources are based on a gas puff target irradiated with a nanosecond laser pulse. The targets are created using an electromagnetic valve system equipped with a double-nozzle. The valve system, which is supplied with two different gases, produces a double-stream gas puff target which consists of an elongated stream of high-Z gas surrounded by a stream of low-Z gas. The double-stream gas puff target approach secures high conversion efficiency of laser energy into soft X-ray and EUV energy without degradation of the nozzle. The targets are irradiated with laser pulses produced by commercial Nd:YAG lasers (EKSPLA) with a duration of 1 ns to 10 ns, energy in the pulse from 0.5 J to 10 J with a repetition of 10 Hz. The sources have been applied in various fields, including metrology, processing of materials, nanoimaging, radiography and tomography, photoionized plasma studies, and radiobiology. In this paper the recent results on application of the sources in X-ray absorption spectroscopy and optical coherence tomography (OCT) are presented. The use of the source in laboratory systems for the near-edge X-ray absorption fine structure (NEXAFS) spectroscopy is demonstrated. The NEXAFS system was applied for 2-D elemental mapping of EUV-modified polymer samples. A single-shot exposure NEXAFS spectroscopy is presented. Application of the source in X-ray optical coherence tomography (XCT) has been also demonstrated. The preliminary results on XCT imaging of Mo/Si multilayers with 2 nm axial resolution, using broad-band soft X-ray emission, are presented.
基于气体抽吸靶的激光等离子体x射线源的研究与应用进展(会议报告)
软x射线和极紫外(EUV)激光等离子体源已经发展到应用于各个科学技术领域。光源是基于用纳秒激光脉冲照射的气体喷涌目标。目标是使用配备双喷嘴的电磁阀系统创建的。该阀系统提供两种不同的气体,产生双流气体抽吸目标,该目标由高z气体的细长流和低z气体流包围组成。双流气体喷涌靶方法保证了激光能量向软x射线和极紫外光能量的高转换效率,而不会降低喷嘴的性能。用商用Nd:YAG激光器(EKSPLA)产生的激光脉冲照射目标,脉冲持续时间为1ns至10ns,脉冲能量为0.5 J至10j,重复频率为10hz。这些光源已被应用于各个领域,包括计量学、材料处理、纳米成像、放射照相和断层扫描、光电离等离子体研究和放射生物学。本文介绍了这些光源在x射线吸收光谱和光学相干层析成像(OCT)中应用的最新成果。该源在实验室系统中用于近边缘x射线吸收精细结构(NEXAFS)光谱的演示。应用NEXAFS系统对euv修饰的聚合物样品进行了二维元素制图。介绍了一种单次曝光NEXAFS光谱法。本文还演示了该光源在x射线光学相干层析成像(XCT)中的应用。本文给出了Mo/Si多层膜轴向分辨率为2 nm的宽带软x射线XCT成像的初步结果。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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