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Simulation and mitigation of the magneto-Rayleigh-Taylor instabilities in Z-pinch gas discharge extreme ultraviolet plasma radiation sources

机译:Z捏气体放电极紫外等离子体辐射源中磁-瑞利-泰勒不稳定性的模拟和缓解

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摘要

The development and use of a single-fluid two-temperature approximated 2-D Magneto-Hydrodynamics code is reported. Z-pinch dynamics and the evolution of Magneto-Rayleigh-Taylor (MRT) instabilities in a gas jet type Extreme Ultraviolet (EUV) source are investigated with this code. The implosion and stagnation processes of the Z-pinch dynamics and the influence of initial perturbations (single mode, multi- mode, and random seeds) on MRT instability are discussed in detail. In the case of single mode seeds, the simulation shows that the growth rates for mm-scale wavelengths up to 4 mm are between 0.05 and 0.065 ns~(-1). For multi-mode seeds, the mode coupling effect leads to a series of other harmonics, and complicates MRT instability evolution. For perturbation by random seeds, the modes evolve to longer wavelengths and finally converge to a mm-scale wavelength approximately 1 mm. MRT instabilities can also alter the pinch stagnation state and lead to temperature and density fluctuations along the Z axis, which eventually affects the homogeneity of the EUV radiation output. Finally, the simulation results are related to experimental results to discuss the mitigations of MRT instability.
机译:报告了单流体两温近似二维磁流体力学代码的开发和使用。使用此代码研究了气体喷射型极紫外(EUV)源中的Z捏动态和磁瑞利泰勒(MRT)不稳定性的演化。详细讨论了Z捏动态的内爆和停滞过程以及初始扰动(单模,多模和随机种子)对MRT不稳定性的影响。在单模种子的情况下,仿真表明,毫米级波长(最大4 mm)的生长速率在0.05到0.065 ns〜(-1)之间。对于多模式种子,模式耦合效应会导致一系列其他谐波,并使MRT不稳定性演变复杂化。对于随机种子的扰动,这些模式演变为更长的波长,最后会聚为大约1 mm的毫米级波长。 MRT的不稳定性也会改变夹点的停滞状态,并导致沿Z轴的温度和密度波动,最终影响EUV辐射输出的均匀性。最后,仿真结果与实验结果相关,以讨论缓解地铁失稳的方法。

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