论文标题

太阳半径的近一个世纪的变化

Nearly Century-scale Variation of the Sun's Radius

论文作者

Hiremath, K. M., Rozelot, J. P., Sarp, V., Kilcik, A., G., Pavan D., Gurumath, Shashanka R.

论文摘要

Kodaikanal档案计划(印度)现在可以以数字形式为1923年至2011年的日常数字化的太阳能白光图片,从1923年到2011年。我们在这里介绍太阳半径数据,在艰苦的努力中获得的太阳半径数据以消除了所有导致其测量错误的效果(ligbertions的效果(ligb缩小,折叠,折射,拒绝,折射,quartions instrument ostertaltent效果,其他效果)。在应用了具有红噪声近似和Morlet小波变换分析的多齿方法后,分析了这些数据以揭示任何显着的周期性变化。在消除了明显的周期性变化(例如太阳旋转和年度旋转)之后,我们发现可能在11.4岁时发生的循环变化,准两年期振荡为1.5和3.8岁,而Rieger型的周期性在〜159、91、91和63天。在6.3-7.8岁时检测到的另外两个主要周期性产生的〜7.5年周期性(作为平均值)可以识别为大气成分。登出数据显示,在平均半径为959“ .7 +/- 0” .7的平均半径上,在分析时间段内的残留量小于〜( - )1个MAS:如果不是伪造的话,此估计估计显示出微弱的下降,但可能会证实更多的稳定性在范围内,工具和方法论限制内,太阳能直径的构造性。 Kodaikanal长期观察结果有助于国际努力,以将过去的太阳能数据测量带到社区,以进一步探索问题,例如,可用于查明“太阳能周期的座位”的光度/半径属性的问题。

The Kodaikanal Archive Program (India) is now available to the scientific community in digital form as daily digitized solar white light pictures, from 1923 to 2011. We present here the solar radius data, obtained after a painstaking effort to remove all effects that contribute to the error in their measurements (limb darkening, distortion of the objective lens, refraction, other instrumental effects, etc.). These data were analyzed to reveal any significant periodic variations, after applying a multi-taper method with red noise approximation and the Morlet wavelet transform analysis. After removing obvious periodic variations (such as solar rotation and Earth annual rotation), we found a possible cycle variation at 11.4 yr, quasi biennial oscillations at 1.5 and 3.8 yr, and Rieger-type periodicity at ~159, 91, and 63 days. Another ~7.5 yr periodicity (as a mean) resulting from two other main periodicities detected at 6.3-7.8 yr can be identified as an atmospheric component. The detrending data show, over a mean radius of 959".7 +/- 0".7, a residual of less than ~(-)1 mas over the time period of analysis: if not spurious, this estimate indicates a faint decline, but probably confirms more the constancy of the solar diameter during the considered ranging time, within instrumental and methodological limits. The Kodaikanal long quality observations contribute to international efforts to bring past solar data measurements to the community to further explore issues, for instance, those of the luminosity/radius properties that could be used to pinpoint the "seat of the solar cycle."

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