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首页> 外文期刊>Journal of Physics, B. Atomic, Molecular and Optical Physics: An Institute of Physics Journal >Robust computational method for fast calculations of multicharged ions lineshapes affected by a low-frequency electrostatic plasma turbulence
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Robust computational method for fast calculations of multicharged ions lineshapes affected by a low-frequency electrostatic plasma turbulence

机译:基于低频静电等离子体湍流影响的多晶体离子线路快速计算的鲁棒计算方法

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Transport phenomena in plasmas, such as, e.g., resistivity, can be affected by electrostatic turbulence that frequently occurs in various kinds of laboratory and astrophysical plasmas. Transport phenomena are affected most significantly by a low-frequency electrostatic turbulence -such as, e.g., ion acoustic waves, also known as ionic sound-causing anomalous resistivity. In this case, for computing profiles of spectral lines, emitted by plasma ions, by any appropriate code for diagnostic purposes, it is necessary to calculate the distribution of the total quasistatic field. For a practically important situation, where the average turbulent field is much greater than the characteristic ion microfield, we develop a robust computational method valid for any appropriate distribution of the ion microfield at a charged point. We show that the correction to the Rayleigh distribution of the turbulent field is controlled by the behavior of the ion microfield distribution at large fields-in distinction to the opposite (and therefore, erroneous) result in the literature. We also obtain a universal analytical expression for the correction to the Rayleigh distribution based on the asymptotic of the ion microfield distribution at large fields at a charged point. By comparison with various known distributions of the ion microfield, we show that our asymptotic formula has a sufficiently high accuracy. Also exact computations are used to verify the high accuracy of the method. This robust approximate, but accurate method yields faster computational results than the exact calculations and therefore should be important for practical situations requiring simultaneous computations of a large number of spectral lineshapes (e.g., for calculating opacities)-especially for laser-produced plasmas.
机译:等离子体中的运输现象,例如,例如电阻率,可能受到静电湍流的影响,这些湍流通常发生在各种实验室和天体物理等离子体中。通过低频静电湍流-SUCH,传输现象最显着影响,例如离子声波,也称为离子声音引起的异常电阻率。在这种情况下,对于由等离子体离子发射的谱线的计算简档,通过任何适用于诊断目的的代码,有必要计算总Quasistatic场的分布。对于实际上重要的情况,平均湍流场大于特征离子微领域,我们开发了一种鲁棒的计算方法,该方法有效地在带电点处的离子微垫的任何适当分布。我们表明,对湍流场的瑞利分布的校正由大场的离子微焊条分布的行为控制 - 区别于文献中的相反(并且因此,错误)。我们还获得了基于在带电点的大场的离子微焊接分布的渐近分布校正的通用分析表达。通过比较与离子微领域的各种已知分布,我们表明我们的渐近式具有足够高的精度。还用于验证方法的高精度。这种稳健的近似,但精确的方法产生比精确的计算更快的计算结果,因此对于需要同时计算大量光谱线(例如,用于计算不透明性)的实际情况来说应该是重要的。

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