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首页> 外文期刊>Journal of mass spectrometry: JMS >Charge state distribution studies of pure and oxygen mixed krypton ECR plasma - signature of isotope anomaly and gas mixing effect
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Charge state distribution studies of pure and oxygen mixed krypton ECR plasma - signature of isotope anomaly and gas mixing effect

机译:纯氧和氧混合k ECR等离子体的电荷态分布研究-同位素异常特征和气体混合效应

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We report the charge state distributions of the pure, 25% and 50% oxygen mixed krypton plasma to shed more light on the understanding of the gas mixing and the isotope anomaly [A. G. Drentje, Rev. Sci. Instrum. 63 (1992) 2875 and Y Kawai, D Meyer, A Nadzeyka, U Wolters and K Wiesemann, Plasma Sources Sci. Technol. 10 (2001) 451] in the electron cyclotron resonance (ECR) plasmas. The krypton plasma was produced using a 10 GHz all-permanent-magnet ECR ion source. The intensities of the highly abundant four isotopes, viz. Kr-82 (similar to 11.58%), Kr-83 (similar to 11.49%), Kr-84 (similar to 57%) and Kr-86 (17.3%) up to similar to + 14 charge state have been measured by extracting the ions from the plasma and analysing them in the mass and the energy using a large acceptance analyzer-cum-switching dipole magnet. The influence of the oxygen gas mixing on the isotopic krypton ion intensities is clearly evidenced beyond + 9 charge state. With and without oxygen mixing, the charge state distribution of the krypton ECR plasma shows the isotope anomaly with unusual trends. The anomaly in the intensities of the isotopes having quite closer natural abundance, viz. Kr-82, Kr-86 and Kr-83, Kr-86 is prominent, whereas the intensity ratio of Kr-86 to Kr-84 shows a weak signature of it. The isotope anomaly tends to disappear with increasing oxygen mixing in the plasma. The observed trends in the intensities of the krypton isotopes do not follow the prediction of linear Landau wave damping in the plasma. Copyright (C) 2016 John Wiley & Sons, Ltd.
机译:我们报告了纯的,25%和50%的氧混合k等离子体的电荷状态分布,以进一步了解气体混合和同位素异常[A. G. Drentje,科学博士。仪器63(1992)2875和Y Kawai,D Meyer,A Nadzeyka,U Wolters和K Wiesemann,等离子来源科学。技术。 10(2001)451]的电子回旋共振(ECR)等离子体中。 a等离子体是使用10 GHz永久性ECR离子源产生的。高度丰富的四个同位素的强度,即。通过萃取测量了Kr-82(约11.58%),Kr-83(约11.49%),Kr-84(约57%)和Kr-86(17.3%)直至+ 14电荷状态等离子体中的离子,并使用大型验收分析器兼开关偶极磁体对它们的质量和能量进行分析。氧气混合对同位素k离子强度的影响在+ 9荷电状态之外得到了明显证明。在有和没有氧气混合的情况下,E ECR等离子体的电荷状态分布都显示出具有异常趋势的同位素异常。同位素强度的异常具有相当接近的自然丰度,即。 Kr-82,Kr-86和Kr-83,Kr-86突出,而Kr-86与Kr-84的强度比显示出较弱的签名。随着等离子体中氧混合的增加,同位素异常趋于消失。 the同位素强度的观测趋势没有遵循等离子体中线性朗道波衰减的预测。版权所有(C)2016 John Wiley&Sons,Ltd.

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