论文标题

用阿尔玛建模安静的太阳电池和网络排放

Modeling the quiet Sun cell and network emission with ALMA

论文作者

Alissandrakis, C. E., Nindos, A., Bastian, T. S., Patsourakos, S.

论文摘要

Alma对MM-$λ$的太阳观察提供了一个独特的机会来研究太阳能球的温度结构。在本文中,我们通过在3 mm处的高分辨率ALMA图像(频段3)和1.26 mm(带6)(频段6)中包括测量网络和细胞内部的亮度温度来扩展以前的工作,以对安静的太阳的色球温度进行建模。我们还检查了Alma全盘图像的绝对校准。我们建议,频段6中太阳能磁盘中心的亮度温度高于White等人推荐的值。 (2017年),我们为平均安静太阳的电子温度变化提供了改进的结果,并具有光学深度以及磁盘中心的派生光谱。我们发现,网络中的电子温度大大低于Fontenla等人的模型F所预测的。 (1993年)和细胞内部的内部大大高于模型A的预测。取决于网络/细胞隔离方案,与模型预测的$ 3280 K相比,网络和细胞之间的电子温度差异为$τ= 1 $(100 GHz)从$ \ sim $ 660到$ \ sim $ 1550 k,而$ \ sim $ 1550 k;同样,$ t_e $比率从$ \ sim $ 1.10到1.24,而$ \ sim $ \ sim $ 1.55。我们还发现,随着$τ$的减小,网络/单元$ t_e(τ)$曲线的差异差异,这表明与高度相比增加,网络中的温度可能比单元内部更陡。

ALMA observations of the Sun at mm-$λ$ offer a unique opportunity to investigate the temperature structure of the solar chromosphere. In this article we expand our previous work on modeling the chromospheric temperature of the quiet Sun, by including measurements of the brightness temperature in the network and cell interiors, from high resolution ALMA images at 3 mm (Band 3) and 1.26 mm (Band 6). We also examine the absolute calibration of ALMA full-disk images. We suggest that the brightness temperature at the center of the solar disk in Band 6 is $\sim440$ K above the value recommended by White et al. (2017) and we give improved results for the electron temperature variation of the average quiet Sun with optical depth, as well as the derived spectrum at the center of the disk. We found that the electron temperature in the network is considerably lower than predicted by model F of Fontenla et al. (1993) and that of the cell interior considerably higher than predicted by model A. Depending upon the network/cell segregation scheme, the electron temperature difference between network and cell at $τ=1$ (100 GHz) is from $\sim$660 to $\sim$1550 K, compared to $\sim$3280 K predicted by the models; similarly, the $T_e$ ratio is from $\sim$1.10, to 1.24, against $\sim$1.55 of the model prediction. We also found that the network/cell $T_e(τ)$ curves diverge as $τ$ decreases, indicating an increase of contrast with height and possibly a steeper temperature rise in the network than in the cell interior.

扫码加入交流群

加入微信交流群

微信交流群二维码

扫码加入学术交流群,获取更多资源