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Demonstration of gold foam plasma as bright x-ray source and slow ion emitters

机译:黄金泡沫等离子体作为亮X射线源和慢离子发射器的示范

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In this paper, enhancement in x-ray emission and reduction of kinetic energy of ions from low density foam plasma is demonstrated by performing experiment and hydrodynamic simulation. The plasma is produced by irradiation of solid gold and gold foam targets (densities 0.2 g/cc, 0.13 g/cc and 0.1 g/cc) at intensities in the range of 4 x 10(13) -1 x 10(14) W cm(-2). Time resolved x-ray emission is measured by an x-ray streak camera with 10 ps resolution. The x-ray flux measured by the streak camera from low density gold foam shows a 13% enhancement in comparison to solid gold in the spectral range >0.8 keV and above. Decrease in velocity of ions is observed in low density gold foam. In solid gold, thermal ions peak velocity is 31 x 10(4) m s(-1) and spread in narrow energy width, however, in case of 0.1 g/cc, peak velocity reduces to 6 x 10(4) m s(-1) towards target normal and emitted in broad energy range. Shadowgraphy results also provide evidence of narrower expansion of plasma from solid gold. However, total ion flux from low density gold foam is comparable to ion flux of solid gold indicating the process of volumetric absorption.
机译:本文通过进行实验和流体动力学模拟来证明,通过进行实验和流体动力学来证明来自低密度泡沫等离子体的离子的离子的X射线发射和降低的增强。通过在4×10(13)-1×10(14)W的强度下,通过照射固体金和金泡沫靶标(密度为0.2g / cc,0.13g / cc和0.1g / cc)来产生等离子体。 cm(-2)。时间解决的X射线发射由具有10 PS分辨率的X射线条纹相机测量。由低密度金泡沫测量的X射线通量从低密度金泡沫中测量的X射线通量显示出与频谱范围内的固体金和上述的固体金相比,增强了13%的增强。在低密度金泡沫中观察到离子的速度降低。在实心金中,热离子峰值速度为31×10(4)ms(-1),并且在窄的能量宽度下展开,然而,在0.1g / cc的情况下,峰值速度降低至6×10(4)ms( - 1)朝向目标正常并在广泛的能量范围内发出。影像结果还提供了从纯金扩张较窄的等离子体较窄的证据。然而,低密度金泡沫的总离子通量与实体金的离子通量相当,指示体积吸收过程。

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