论文标题

3he富太阳能颗粒的太阳能来源的温度和与离子丰度的关系

Temperature in Solar Sources of 3He-rich Solar Energetic Particles and Relation to Ion Abundances

论文作者

Bucik, R., Mulay, S. M., Mason, G. M., Nitta, N. V., Desai, M. I., Dayeh, M. A.

论文摘要

据信,富含3HE的太阳能颗粒(SEP)是通过依赖于离子电荷与质量(q/m)比的机制在太阳耀斑或喷气机中加速的。这意味着耀斑等离子体特性(例如温度)可以有效地确定3he富集的元素的元素丰度。这项研究研究了2010- 2015年期间24 3HE富含的SEP事件的HE-FE离子的超颗粒(<0.2 MeV/nuc)丰度(<0.2 MeV/nuc)的关系之间的关系。差异发射测量技术用于从太阳能动力学观测站的极端紫外成像观测值中得出源区域的温度。获得的温度分布在2.0-2.5 MK处达到峰值,这与基于原位元素丰度或电荷状态测量的早期发现令人惊讶地一致。我们发现3HE/4HE比与太阳源温度之间具有显着的抗相关性,系数为-0.6。这很可能是由非汇总式插入过程引起的,因为这两个同位素都将在推断的温度范围内完全电离。这项研究表明,元素比4He/o,n/o,ne/o,si/o,s/o,ca/o,fe/o通常按照电离平衡时的丰度增强计算的温度表现。 C和MG是在获得的温度范围内Q/M比的两个物种,其温度没有这种行为,并且可能受到与3HE/4HE比率相似的过程的影响。

3He-rich solar energetic particles (SEPs) are believed to be accelerated in solar flares or jets by a mechanism that depends on the ion charge-to-mass (Q/M) ratio. It implies that the flare plasma characteristics (e.g., temperature) may be effective in determining the elemental abundances of 3He-rich SEPs. This study examines the relation between the suprathermal (<0.2 MeV/nuc) abundances of the He-Fe ions measured on the Advanced Composition Explorer and temperature in the solar sources for 24 3He-rich SEP events in the period 2010-2015. The differential emission measure technique is applied to derive the temperature of the source regions from the extreme ultraviolet imaging observations on the Solar Dynamics Observatory. The obtained temperature distribution peaks at 2.0-2.5 MK that is surprisingly consistent with earlier findings based on in-situ elemental abundance or charge state measurements. We have found a significant anti-correlation between 3He/4He ratio and solar source temperature with a coefficient -0.6. It is most likely caused by non-charge-stripping processes, as both isotopes would be fully ionized in the inferred temperature range. This study shows that the elemental ratios 4He/O, N/O, Ne/O, Si/O, S/O, Ca/O, Fe/O generally behave with temperature as expected from abundance enhancement calculations at ionization equilibrium. The C and Mg, the two species with small changes in the Q/M ratio in the obtained temperature range, show no such behavior with temperature and could be influenced by similar processes as for the 3He/4He ratio.

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