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Uniformity of cylindrical imploding underwater shockwaves at very small radii

机译:极小半径下圆柱形爆炸水下冲击波的均匀性

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摘要

We compare the convergent shockwaves generated from underwater, cylindrical arrays of copper wire exploded by multiple kilo-ampere current pulses on nanosecond and microsecond scales. In both cases, the pulsed power devices used for the experiments had the same stored energy ( 500 J) and the wire mass was adjusted to optimize energy transfer to the shockwave. Laser backlit framing images of the shock front were achieved down to the radius of 30 l m. It was found that even in the case of initial azimuthal non-symmetry, the shock wave self-repairs in the final stages of its motion, leading to a highly uniform implosion. In both these and previous experiments, interference fringes have been observed in streak and framing images as the shockwave approached the axis. We have been able to accurately model the origin of the fringes, which is due to the propagation of the laser beam diffracting off the uniform converging shock front. The dynamics of the shockwave and its uniformity at small radii indicate that even with only 500 J stored energies, this technique should produce pressures above 10¹⁰ Pa on the axis, with temperatures and densities ideal for warm dense matter research.
机译:我们比较了由纳秒级和微秒级的多个千安培电流脉冲爆炸的水下圆柱状铜线阵列产生的会聚冲击波。在这两种情况下,用于实验的脉冲功率设备都具有相同的存储能量(500 J),并且调整了导线质量以优化向冲击波的能量传递。冲击前锋的激光背光取景图像在半径30 l m范围内均可获得。结果发现,即使在初始方位角非对称的情况下,冲击波在其运动的最后阶段也会自我修复,从而导致高度均匀的内爆。在这些和以前的实验中,当冲击波接近轴时,在条纹和成帧图像中都观察到了干涉条纹。我们已经能够精确地模拟条纹的起源,这是由于激光束的传播从均匀会聚的激波前沿衍射而来。冲击波的动力学及其在小半径范围内的均匀性表明,即使仅存储500 J能量,该技术也应在轴上产生高于10 -1 Pa的压力,并且温度和密度对于进行热致密物质研究是理想的。

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