Brightness of the Sun's small scale magnetic field: proximity effects

被引:6
作者
Thaler, I. [1 ]
Spruit, H. C. [1 ]
机构
[1] Max Planck Inst Astrophys, D-85748 Garching, Germany
关键词
convection; magnetohydrodynamics (MHD); methods: numerical; Sun: granulation; Sun: surface magnetism; Sun: photosphere; SOLAR IRRADIANCE VARIATIONS; QUIET SUN; LIMB VARIATION; FACULAE; RECONSTRUCTION; VARIABILITY; SIMULATIONS;
D O I
10.1051/0004-6361/201322126
中图分类号
P1 [天文学];
学科分类号
0704 ;
摘要
The net effect of the small scale magnetic field on the Sun's (bolometric) brightness is studied with realistic 3D MHD simulations. The direct effect of brightening within the magnetic field itself is consistent with measurements in high-resolution observations. The high "photometric accuracy" of the simulations, however, reveal compensating brightness effects that are hard to detect observationally. The influence of magnetic concentrations on the surrounding nonmagnetic convective flows (a "proximity effect") reduces the brightness by an amount exceeding the brightening by the magnetic concentrations themselves. The net photospheric effect of the small scale field (approximate to-0.34% at a mean flux density of 50 G) is thus negative. We conclude that the main contribution to the observed positive correlation between the magnetic field and total solar irradiance must be magnetic dissipation in layers around the temperature minimum and above (not included in the simulations). This agrees with existing inferences from observations.
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页数:10
相关论文
共 32 条
[1]   Intensity contrast from MHD simulations and HINODE observations [J].
Afram, N. ;
Unruh, Y. C. ;
Solanki, S. K. ;
Schuessler, M. ;
Lagg, A. ;
Vogler, A. .
ASTRONOMY & ASTROPHYSICS, 2011, 526
[2]   Reconstruction of total solar irradiance 1974-2009 [J].
Ball, W. T. ;
Unruh, Y. C. ;
Krivova, N. A. ;
Solanki, S. ;
Wenzler, T. ;
Mortlock, D. J. ;
Jaffe, A. H. .
ASTRONOMY & ASTROPHYSICS, 2012, 541
[3]   Simulations of the solar near-surface layers with the CO5BOLD, MURaM, and Stagger codes [J].
Beeck, B. ;
Collet, R. ;
Steffen, M. ;
Asplund, M. ;
Cameron, R. H. ;
Freytag, B. ;
Hayek, W. ;
Ludwig, H. -G. ;
Schuessler, M. .
ASTRONOMY & ASTROPHYSICS, 2012, 539
[4]   Observational manifestations of solar magnetoconvection:: Center-to-limb variation [J].
Carlsson, M ;
Stein, RF ;
Nordlund, Å ;
Scharmer, GB .
ASTROPHYSICAL JOURNAL, 2004, 610 (02) :L137-L140
[5]  
Chiang W.-H., 1983, SOL PHYS, V97, P9
[6]   Three-dimensional surface convection simulations of metal-poor stars The effect of scattering on the photospheric temperature stratification [J].
Collet, R. ;
Hayek, W. ;
Asplund, M. ;
Nordlund, A. ;
Trampedach, R. ;
Gudiksen, B. .
ASTRONOMY & ASTROPHYSICS, 2011, 528
[7]   Rapid temporal variability of faculae:: High-resolution observations and modeling [J].
De Pontieu, B. ;
Carlsson, M. ;
Stein, R. ;
van der Voort, L. Rouppe ;
Lofdahl, M. ;
van Noort, M. ;
Nordlund, A. ;
Scharmer, G. .
ASTROPHYSICAL JOURNAL, 2006, 646 (02) :1405-1420
[8]   Do photospheric brightness structures outside magnetic flux tubes contribute to solar luminosity variation? [J].
Foukal, Peter ;
Bernasconi, Pietro N. .
SOLAR PHYSICS, 2008, 248 (01) :1-15
[9]   MULTI-CHANNEL MAGNETOGRAPH OBSERVATIONS .3. FACULAE [J].
FRAZIER, EN .
SOLAR PHYSICS, 1971, 21 (01) :42-&
[10]   Solar irradiance variability since 1978 -: Revision of the PMOD composite during solar cycle 21 [J].
Froehlich, C. .
SPACE SCIENCE REVIEWS, 2006, 125 (1-4) :53-65