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Effect of Atomic Number on Plasma Pinch Properties and Radiative Emissions

机译:原子序数对等离子夹紧性能和辐射排放的影响

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The aim of the research is to examine the dependence of plasma pinch properties and radiation emissions on the atomic number of the operating gas within the dense plasma focus device (NX2) when using hydrogen and argon gases. Simulation was performed with Lee’s code on an NX2 dense plasma focus at a constant gas pressure value ( ). The results showed that the minimum radius of the plasma focus in the case of the hydrogen plasma pinch was 0.30?cm and in the case of the argon plasma pinch 0.17?cm, and this affected the value of the radiation emission as it was and 11?J for the hydrogen and argon pinch, respectively. The energy of the ion beam released by the breakdown of the plasma pinch was found as in the state of hydrogen and in the state of argon.
机译:该研究的目的是在使用氢气和氩气气体时检查等离子体夹紧性能和辐射排放对致密等离子体聚焦装置(NX2)内的工作气体的原子数量的依赖性。 在恒定气体压力值()上用LEE的致密等离子体聚焦进行模拟。 结果表明,在氢等离子体夹紧的情况下等离子体聚焦的最小半径为0.30Ω·cm,在氩等离子体夹出0.17Ω·cm的情况下,这影响了辐射发射的值,11 分别为氢气和氩气捏。 通过等离子体夹数击穿释放的离子束的能量被发现在氢气状态和氩气状态下。

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