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Cyclicity of Solar Activity During the Maunder Minimum Deduced from Radiocarbon Content

机译:由放射性碳含量推导的最低活动期间太阳活动的周期性

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摘要

This paper presents the features of the “eleven-year” cycle of radiocarbon content during the period of prolonged sunspot minimum called the Maunder Minimum (1645–1715 AD). Whether or not the Sun had maintained the cyclic polarity reversal even during the Maunder Minimum has been a controversial topic for a long time. Although persistency of the cyclicity has been investigated by using cosmogenic isotopes or by calculations, a consistent description has not been obtained so far. Hence, we have obtained a new record of carbon-14 content in tree rings from 1631–1739 AD, and made a comparison with the record previously obtained. Periods of 13–15 and 24–29 years detected in the variation of carbon-14 content seem to be suggesting that the Sun had retained periodic polarity reversal during this prolonged minimum with slightly longer periodicity than that of recent intense solar activity. Our results seem to support the inverse correlation between the intensity and the cycle length of solar activity.
机译:本文介绍了在称为“ Maunder Minimum”(公元1645–1715 AD)的延长黑子最小期间的放射性碳含量“十一年”循环的特征。很长时间以来,即使在Maunder Minimum期间,太阳是否仍保持周期性极性反转一直是一个有争议的话题。尽管已经通过使用宇宙成因同位素或通过计算研究了周期性的持久性,但到目前为止尚未获得一致的描述。因此,我们获得了公元1631年至1739年树环中碳14含量的新记录,并与先前获得的记录进行了比较。在碳14含量变化中检测到的13-15和24-29年的周期似乎表明,在这一延长的最小值期间,太阳保持了周期性的极性反转,其周期性比最近的强烈太阳活动周期稍长。我们的结果似乎支持了太阳活动强度和周期长度之间的反相关。

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  • 来源
    《Solar Physics》 |2004年第2期|317-322|共6页
  • 作者单位

    Solar-Terrestrial Environment Laboratory Nagoya University;

    Solar-Terrestrial Environment Laboratory Nagoya University;

    Solar-Terrestrial Environment Laboratory Nagoya University;

    Solar-Terrestrial Environment Laboratory Nagoya University;

    Solar-Terrestrial Environment Laboratory Nagoya University;

    Center for Chronological Research Nagoya University;

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  • 正文语种 eng
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