Studies of Magnetic Fields in the Solar Photosphere Using the Line-Ratio Method

被引:0
|
作者
Baranovskii, E. A. [1 ]
Tsap, T. T. [1 ]
机构
[1] Crimean Astrophys Observ, Res Inst, UA-98409 Nauchnyi, Crimea, Ukraine
关键词
SMALL-SCALE; QUIET-SUN; ATMOSPHERE;
D O I
10.3103/S0884591312010047
中图分类号
P1 [天文学];
学科分类号
0704 ;
摘要
The longitudinal magnetic field measured using the Fe I lambda 525 and Fe I lambda 524.7 nm lines and global magnetic field of the sun differ depending on the observatory. To study the cause of these discrepancies, we calculate the H-parallel to(525)/H-parallel to(524.7) ratios for various combinations of magnetic elements and compare them with the corresponding observed values. We use the standard quiet model of the solar photosphere suggesting that there are magnetic fields of different polarities in the range between zero and several kilogauss. The magnetic element distribution is found as a function of magnetic field strength and the parameters of this distribution are determined for which the calculated H-parallel to(525)/H-parallel to(524.7) ratio agrees with the observed one. The sigma-components are found to be shifted differently for various points of the Fe I lambda 525 nm profile calculated for the inhomogeneous magnetic field. The farther the point is from the line center, the larger the sigma-components shift. Such a peculiarity of the profiles may be responsible for the discrepancies in the measured values of the global magnetic field obtained at different observatories. The increase in modulus of the global magnetic field during the maxima of solar activity can be due to a larger fraction of magnetic elements with kilogauss magnetic fields.
引用
收藏
页码:21 / 26
页数:6
相关论文
共 50 条
  • [31] Plasma Parameters of a Gliding Arc Jet at Atmospheric Pressure Obtained by a Line-Ratio Method
    李辉
    谢铭丰
    Plasma Science and Technology, 2013, (08) : 776 - 779
  • [32] Plasma Parameters of a Gliding Arc Jet at Atmospheric Pressure Obtained by a Line-Ratio Method
    Li Hui
    Xie Mingfeng
    PLASMA SCIENCE & TECHNOLOGY, 2013, 15 (08) : 776 - 779
  • [33] INVESTIGATION OF MICROTURBULENT MAGNETIC-FIELDS IN THE SOLAR PHOTOSPHERE BY THEIR HANLE EFFECT IN THE SR-I-4607 ANGSTROM LINE
    FAUROBERTSCHOLL, M
    ASTRONOMY & ASTROPHYSICS, 1993, 268 (02): : 765 - 774
  • [34] Robust Method for Determination of Magnetic Field Strength in the Solar Photosphere
    A. I. Prysiazhnyi
    M. I. Stodilka
    N. G. Shchukina
    Kinematics and Physics of Celestial Bodies, 2018, 34 : 277 - 289
  • [35] A COMPARATIVE STUDY OF MAGNETIC FIELDS IN THE SOLAR PHOTOSPHERE AND CHROMOSPHERE AT EQUATORIAL AND POLAR LATITUDES
    Petrie, G. J. D.
    Patrikeeva, I.
    ASTROPHYSICAL JOURNAL, 2009, 699 (01): : 871 - 884
  • [36] Temporal evolution of small-scale internetwork magnetic fields in the solar photosphere
    Campbell, R. J.
    Mathioudakis, M.
    Collados, M.
    Keys, P. H.
    Asensio Ramos, A.
    Nelson, C. J.
    Kuridze, D.
    Reid, A.
    ASTRONOMY & ASTROPHYSICS, 2021, 647
  • [37] Recent Advances in the Exploration of the Small-Scale Structure of the Quiet Solar Atmosphere: Vortex Flows, the Horizontal Magnetic Field, and the Stokes-V Line-Ratio Method
    Steiner, O.
    Rezaei, R.
    FIFTH HINODE SCIENCE MEETING: EXPLORING THE ACTIVE SUN, 2012, 456 : 3 - 32
  • [38] Plasma Parameters of a Gliding Arc Jet at Atmospheric Pressure Obtained by a Line-Ratio Method
    李辉
    谢铭丰
    Plasma Science and Technology, 2013, 15 (08) : 776 - 779
  • [39] HYDRAULIC CONCENTRATION OF MAGNETIC-FIELDS IN SOLAR PHOTOSPHERE .3. FIELDS OF ONE OR 2 KILOGAUSS
    PARKER, EN
    ASTROPHYSICAL JOURNAL, 1976, 204 (01): : 259 - 267
  • [40] Effect of wall reflection on the determination of electron temperature by the line-ratio method in inductively coupled plasmas
    Pu, YK
    Yu, ZD
    Guo, ZG
    PHYSICS OF PLASMAS, 2005, 12 (11) : 1 - 3