Relation between the area of polar coronal holes and the solar wind speed at a minimum between solar cycles 22 and 23

Pub Date : 2023-09-30 DOI:10.12737/stp-93202313
Aleksey Borisenko, Sergey Bogachev
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Abstract

We have used data from the space telescope SOHO/EIT and the spectrometer VEIS on the Wind spacecraft to compare the solar wind (SW) speed near Earth's orbit with changes in the area of polar coronal holes (CHs) on the Sun during the 1996 solar activity minimum. We have found that in March 1996 the SW speed correlated with the southern CH area by a factor of 0.64. In September and October 1996, a correlation was revealed between the SW speed and the area of the northern CH (the coefficients are 0.64 and 0.85 respectively). We believe that this confirms the assumption that the solar wind from polar CHs can penetrate into the ecliptic plane at solar minimum. The SW speed was 460–500 km/s, which is lower than that from equatorial CHs (600–700 km/s).
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太阳活动周期22和23之间极日冕洞面积与最小太阳风速度的关系
我们利用SOHO/EIT空间望远镜和Wind航天器上的VEIS光谱仪的数据,比较了1996年太阳活动极小期太阳近地轨道太阳风(SW)速度与太阳极地日冕洞(CHs)面积的变化。我们发现1996年3月西南偏南速度与华南地区的相关系数为0.64。1996年9月和10月,西南偏南速度与南海北部面积呈显著相关,相关系数分别为0.64和0.85。我们认为,这证实了来自极地CHs的太阳风可以在太阳极小期穿透黄道面的假设。西南偏南速度为460 ~ 500 km/s,低于赤道CHs的600 ~ 700 km/s。
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