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Creation of hot dense matter in short-pulse laser-plasma interaction with tamped titanium foils

机译:与夯实的钛箔在短脉冲激光等离子体相互作用中产生热致密物质

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摘要

Dense titanium plasma has been heated to an electron temperature up to 1300 eV with a 100 TW, high intensity short-pulse laser. The experiments were conducted using Ti foils (5 μm thick) sandwiched between layers of either aluminum (1 or 2 μm thick) or plastic (2 μm thick) to prevent the effects of prepulse. Targets of two different sizes, i.e., 250 × 250 μm 2 and 1×1 mm2 were used. Spectral measurements of the Ti inner-shell emission, in the region between 4 and 5 keV, were taken from, the front-side (i.e., the laser illuminated side) of the target. The data show large shifts in the Kα emission from open-shell ions, suggesting bulk heating of the sample at near solid density, which was largest for reduced mass targets. Comparison with collisional radiative and 2D radiation hydrodynamics codes indicates a peak temperature of Te,peak= 1300 eV of solid titanium plasma in ∼0.2 μm thin layer. Higher bulk temperature (T e,bulk=100 eV) for aluminum tamped compared to CH tamped targets (Te,bulk=40 eV) was observed. A possible explanation for this difference is described whereby scattering due to the nuclear charge of the tamping material leads to modified electron transport behavior. © 2007 American Institute of Physics.
机译:用100 TW高强度短脉冲激光器将致密的钛等离子体加热到高达1300 eV的电子温度。使用夹在铝(1或2μm厚)或塑料(2μm厚)之间的Ti箔(5μm厚)进行实验,以防止预脉冲的影响。使用两种不同尺寸的靶材,即250×250μm2和1×1 mm2。从靶的前侧(即激光照射侧)获取在4和5keV之间的区域中的Ti内壳发射的光谱测量。数据显示,来自开壳离子的Kα发射量发生了较大变化,表明样品在接近固体密度的条件下大量加热,这对于降低质量目标是最大的。与碰撞辐射和二维辐射流体力学代码的比较表明,固体钛等离子体在约0.2μm的薄层中的峰值温度Te,peak = 1300 eV。与夯实的目标(Te,批量= 40 eV)相比,夯实的铝具有更高的整体温度(T e,bulk = 100 eV)。描述了对此差异的可能解释,由此,由于夯实材料的核电荷而引起的散射导致改性的电子传输行为。 ©2007美国物理研究所。

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