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Hydrogen Balmer beta: The separation between line peaks for plasma electron density diagnostics and self-absorption test

机译:Hydrogen Balmer beta:用于等离子体电子密度诊断和自吸收测试的谱线峰之间的分离

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摘要

We propose a diagnostic technique for the measurement of plasma electron number density, N-e, based on the wavelength separation between peaks, Delta lambda(PS), of hydrogen Balmer beta line, H-beta. In favor of the proposed diagnostic technique we demonstrate high sensitivity of Delta lambda(PS) on N-e and low sensitivity on plasma elementary processes and plasma parameters that may distort the line profile. These properties of Delta lambda(PS) enable reliable N-e plasma diagnostics in the presence of considerable self-absorption. On the basis of available theoretical data tables for the H-beta line profiles, simple Ne=f(Delta lambda(PS)) formulas are proposed. Their validity is experimentally confirmed in a low initial pressure pulsed discharge for the Ne range of (0.2-7)*10(23) m(-3). The agreement of the proposed formulas with another diagnostic technique is well within 10%. In addition, the difference in N-e values obtained from peak separation and from the H-beta line width is successfully used as a self-absorption test for line profile. (C) 2014 Elsevier Ltd. All rights reserved.
机译:我们提出了一种诊断技术,用于测量等离子体电子数密度N-e,这是基于氢巴尔默β谱线H-beta的峰Deltaλ(PS)之间的波长间隔。有利于建议的诊断技术,我们证明了Delta lambda(PS)对N-e的高敏感性以及对等离子体基本过程和等离子体参数的低敏感性,这可能会使谱线轮廓失真。 Delta lambda(PS)的这些特性可在存在大量自吸收的情况下实现可靠​​的N-e等离子体诊断。基于H-beta线轮廓的可用理论数据表,提出了简单的Ne = f(Delta lambda(PS))公式。在(0.2-7)* 10(23)m(-3)的Ne范围内的低初始压力脉冲放电中,通过实验证实了其有效性。所提出的公式与另一种诊断技术的一致性在10%之内。此外,从峰分离和从H-beta线宽获得的N-e值的差异已成功用作线轮廓的自吸收测试。 (C)2014 Elsevier Ltd.保留所有权利。

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