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首页> 外文期刊>The Astrophysical Journal. Letters >Helium Variation across Two Solar Cycles Reveals a Speed-dependent Phase Lag
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Helium Variation across Two Solar Cycles Reveals a Speed-dependent Phase Lag

机译:两个太阳循环的氦变化显示出速度依赖的阶段滞后

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We study the relationship between the solar wind helium-to-hydrogen abundance ratio (A_(He)), solar wind speed (vsw), and sunspot number (SSN) over solar cycles 23 and 24. This is the first full 22 year Hale cycle measured with the Wind spacecraft covering a full cycle of the solar dynamo with two polarity reversals. While previous studies have established a strong correlation between A_(He) and SSN, we show that the phase delay between A_(He) and SSN is a monotonic increasing function of v_(sw). Correcting for this lag, A_(He) returns to the same value at a given SSN over all rising and falling phases and across solar wind speeds. We infer that this speed-dependent lag is a consequence of the mechanism that depletes slow wind A_(He) from its fast wind value during solar wind formation.
机译:我们研究了太阳风氦 - 氢丰度比(A_(HE)),太阳能速度(VSW)和太阳能循环(SSN)之间的关系23和24.这是第一个完整的22年的HALE 用风宇宙飞船测量的周期,覆盖着太阳能发电机的完整循环,具有两个极性逆转。 虽然以前的研究在A_(HE)和SSN之间建立了强烈的相关性,但我们表明A_(HE)和SSN之间的相位延迟是V_(SW)的单调增加功能。 纠正此滞后,A_(HE)返回给定SSN的相同值,超过所有上升和下降阶段,跨太阳风速。 我们推出这种速度依赖的滞后是从太阳风形成期间从其快速风值耗尽慢风A_(HE)的机制的结果。

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