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Experimental study of K-shell X-ray emission generated from nanowire target irradiated by relativistic laser pulses 被引量:3

Experimental study of K-shell X-ray emission generated from nanowire target irradiated by relativistic laser pulses
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摘要 K-shell X-ray emission from a Cu nanowire target irradiated by an ultraintense femtosecond laser pulse is studied using an elliptically bent quartz crystal and imaging plate. The designed bent crystal spectrometer has better spectral resolution, which is higher than 1000. The absolute Ka radiation photon yields are obtained from the experimental results and the Monte-Carlo model. The conversion efficiency of the Cu Ka line is estimated to be 0.019% from the interaction of 4 J, 50-fs laser pulse irradiated on a Cu nanowire target. The high vield of K shell X-ray has important applications in X-ray emission source. K-shell X-ray emission from a Cu nanowire target irradiated by an ultraintense femtosecond laser pulse is studied using an elliptically bent quartz crystal and imaging plate. The designed bent crystal spectrometer has better spectral resolution, which is higher than 1000. The absolute Ka radiation photon yields are obtained from the experimental results and the Monte-Carlo model. The conversion efficiency of the Cu Ka line is estimated to be 0.019% from the interaction of 4 J, 50-fs laser pulse irradiated on a Cu nanowire target. The high vield of K shell X-ray has important applications in X-ray emission source.
出处 《Chinese Optics Letters》 SCIE EI CAS CSCD 2013年第3期81-83,共3页 中国光学快报(英文版)
基金 supported by the National Basic Research Program of China(Nos.011CB808100and2010CB923203) the National Natural Science Foundation of China(Nos.10974214and60921004) the Shanghai Science and Technology Talent Project(No.12XD1405200) the State Key Laboratory Program of Chinese Ministry of Science and Technology
关键词 Electromagnetic wave emission Nanowires Quartz Ultrashort pulses X ray scattering Electromagnetic wave emission Nanowires Quartz Ultrashort pulses X ray scattering
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同被引文献35

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