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Absolute x-ray yields from laser-irradiated, Ge-doped aerogel targets

机译:来自激光照射的GE掺杂气凝胶靶的绝对X射线产量

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We have measured the production of hv ≥ 10 keV x rays from low-density, Ge-doped aerogel targets at the OMEGA laser (Laboratory for Laser Energetics, University of Rochester). The targets were 1.2mm long by 1.5mm diameter beryllium cylinders filled with Ge-doped (20 atomic percent) SiO_2 aerogel. The doped-aerogel density was 4.8 or 6.5 mg/cc. These targets are a major advance over previous doped aerogels: instead of suspending the dopant in the SiO_2 matrix, the Ge atoms, with chemistry similar to Si, are incorporated directly in the matrix. Forty beams of the OMEGA laser (λ = 351 nm) illuminated the two cylindrical faces of the target with a total power of approximately 18 TW. The laser interaction strongly ionizes the target (n_e/n_(cr) ≤ 0.1-0.2), and allows the laser-bleaching wave to ionize supersonically the high-Z emitter ions in the sample. Ge K-shell x-ray emission was spectrally resolved with a two-channel crystal spectrometer and recorded with temporal resolution with a set of calibrated photoconductive devices (PCDs). The heating of the target was imaged with a gated (60 ps time resolution) x-ray framing camera, filtered to observe > 4 keV. 2-D radiative-hydrodynamic calculations predict rapid and uniform heating over the whole target volume with minimal energy losses into hydrodynamic motion. The calculations predict 150-200 J of x-ray energy output with hv ≥ 10 keV. Good agreement between measurements and the calculations is found.
机译:我们已经测量了Omega Laser(罗切斯特大学激光能量学实验室)的低密度,从低密度,电气掺杂气凝胶射线生产HV≥10kevx光线的生产。目标是1.2mm长的1.5mm直径直径的铍圆柱,填充有GE掺杂(20原子百分比)SiO_2气凝胶。掺杂气凝胶密度为4.8或6.5mg / cc。这些靶标是对先前掺杂的气凝胶的主要进展:而不是悬浮在SiO_2基质中的掺杂剂,与类似Si的化学物质的GE原子直接纳入基质中。 Omega激光(λ= 351nm)的四十梁照射了目标的两个圆柱形面,总功率约为18次。激光相互作用强烈地电离靶(N_E / N_(CR)≤0.1-0.2),并允许激光漂白波在样品中的高Z发射器离子进行离子。用双通道晶体光谱仪谱分解Ge K-shell X射线​​发射,并用一组校准的光电导器(PCD)记录时间分辨率。将目标的加热与门控(60 ps时间分辨率)X射线框架相机成像,过滤以观察> 4 keV。 2-D辐射流体动力学计算预测整个目标体积的快速和均匀加热,具有最小的能量损失进入流体动力学运动。计算预测HV≥10kev的X射线能量输出的150-200 j。测量和计算之间的良好一致性。

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