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Supersonic Propagation of Heat Waves in Low Density Heavy Material

机译:低密度重质材料中热波的超音速传播

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The propagation of a supersonic heat-wave through copper-doped foam with a density of 50 mg/cm~3 was experimentally investigated. The wave is driven by 140 eV Holhraum radiations generated in a cylindrical gold cavity heated by a 2 kJ, 1ns laser pulse (0.35 μm). The delayed breakout time of the radiation waves from the rear side of the foam is measured by a three-chromatic streaked x-ray spectrometer (TCS) consisting of a set of three-imaging pinholes and an array of three transmission gratings coupled with an x-ray streak camera (XSC). With one shot, simultaneous measurements of the delays of the drive source and the radiation with two different energies (210 eV, 840 eV) through the foam have been made for the first time. The experimental results indicate that the time delays vary with photon energies. The radiation with an energy of 210 eV propagates at a lower velocity. The radiating heat wave propagates with a velocity that is larger than the sound speed. Using TGS, the transmitting spectrum was measured, and then lower limit of the optical depth which is more than 1, was obtained. The experimental data were in agreement with numerical simulations.
机译:实验研究了超声热波在密度为50 mg / cm〜3的掺铜泡沫中的传播。该波由圆柱形金腔中产生的140 eV Holhraum辐射驱动,该圆柱形金腔由2 kJ,1ns激光脉冲(0.35μm)加热。通过三色条纹X射线光谱仪(TCS)测量泡沫从泡沫体背面发出的延迟发射时间,该光谱仪由一组三个成像针孔和三个与x耦合的透射光栅组成。射线条纹相机(XSC)。一口气,第一次同时测量了驱动源和通过泡沫的两种不同能量(210 eV,840 eV)的辐射的延迟。实验结果表明,时间延迟随光子能量的变化而变化。能量为210 eV的辐射以较低的速度传播。辐射热波以大于声速的速度传播。使用TGS,测量透射光谱,然后获得大于1的光学深度的下限。实验数据与数值模拟一致。

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