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Measurement of the time-resolved x-ray emission of different elements irradiated with a subpicosecond high-power laser

机译:测量用子秒高功率激光照射的不同元素的时间分辨X射线发射

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X-ray spectra of a few picosecond duration were emitted by aluminum, selenium and samarium thin foils irradiated with a 100 TW, 300 fs laser at 0.53 μm wavelength. They were measured in the 1600 eV range with high temporal and spectral resolution, using a high-speed streak camera coupled to a conical Bragg crystal. Gradients were limited by using thin foils (300 to 800 Å) deposited on a 50 μm gold pinhole. Frequency Domain Interferometry was set to measure the velocity of the critical density at the rear of the target and deduce the electron temperature. A few picosecond duration X-ray spectra have been measured. Sm spectra showed no spectral features in the measured wavelength range, providing a spectrally homogeneous backlighter for absorption spectroscopy. The duration of the emission was shorter when observed through a pinhole. 1-D hydrodynamic simulations coupled to an atomic collisional-radiative code have been used to simulate the X-ray emission of aluminum. The main features of the experimental time resolved spectra, obtained for the pinhole target have been well reproduced, for an initial temperature of 700 ± 100 eV.
机译:几种皮秒持续时间的X射线光谱由铝,硒和钐薄箔发射,其用100w,300 fs激光器的0.53μm波长照射。使用高速线相机耦合到锥形布拉格晶体的高速条纹相机,在1600EV范围内测量它们。通过使用薄箔(300至800Å)沉积在50μm金针孔上的梯度限制。将频域干涉测量法设定为测量目标后部的临界密度的速度并推导电子温度。已经测量了一些皮秒持续时间X射线光谱。 SM光谱在测量的波长范围内没有显示光谱特征,提供用于吸收光谱的光谱均匀的反光灯。当通过针孔观察时,发射的持续时间更短。耦合到原子碰撞码代码的1-D流体动力模拟已被用于模拟铝的X射线排放。实验时间已解析光谱的主要特征,用于针孔靶的初始温度为700±100eV的初始温度。

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