SOLAR-CYCLE VARIATION OF SOUND SPEED NEAR THE SOLAR SURFACE

被引:11
作者
Rabello-Soares, M. C. [1 ]
机构
[1] Stanford Univ, WW Hansen Expt Phys Lab, Stanford, CA 94305 USA
关键词
methods: data analysis; Sun: activity; Sun: helioseismology; Sun: interior; Sun: oscillations; MICHELSON DOPPLER IMAGER; P-MODE PARAMETERS; FREQUENCY; MDI; VARIABILITY; INVERSION; REGIONS; BASE; SUN;
D O I
10.1088/0004-637X/745/2/184
中图分类号
P1 [天文学];
学科分类号
0704 ;
摘要
We present evidence that the sound-speed variation with solar activity has a two-layer configuration, similar to the one observed below an active region, which consists of a negative layer near the solar surface and a positive one in the layer immediately below the first one. Frequency differences between the activity minimum and maximum of solar cycle 23, obtained applying global helioseismology to the Michelson Doppler Imager on board the Solar and Heliospheric Observatory, is used to determine the sound-speed variation from below the base of the convection zone to a few Mm below the solar surface. We find that the sound speed at solar maximum is smaller than at solar minimum at the limit of our determination (5.5 Mm). The min-to-max difference decreases in absolute values until similar to 7 Mm. At larger depths, the sound speed at solar maximum is larger than at solar minimum and the difference increases with depth until similar to 10 Mm. At this depth, the relative difference (delta c(2)/c(2)) is less than half of the value observed at the lowest depth determination. At deeper layers, it slowly decreases with depth until there is no difference between maximum and minimum activity.
引用
收藏
页数:6
相关论文
共 50 条
[21]   Solar cycle dependent variation of solar granulation [J].
Hanslmeier, A ;
Muller, R .
SOLAR VARIABILITY: FROM CORE TO OUTER FRONTIERS, VOLS 1 & 2, 2002, 506 :843-846
[22]   A NEW SOLAR-CYCLE MODEL INCLUDING MERIDIONAL CIRCULATION [J].
WANG, YM ;
SHEELEY, NR ;
NASH, AG .
ASTROPHYSICAL JOURNAL, 1991, 383 (01) :431-442
[23]   Solar-Cycle Related Changes at the Base of the Convection Zone [J].
Baldner, C. S. ;
Larson, T. P. ;
Basu, S. .
SOLAR-STELLAR DYNAMOS AS REVEALED BY HELIO AND ASTEROSEISMOLOGY: GONG 2008/SOHO 21, 2009, 416 :477-+
[24]   Variation of the solar magnetic flux spectrum during solar cycle 23 [J].
Jin, C. L. ;
Wang, J. X. .
JOURNAL OF GEOPHYSICAL RESEARCH-SPACE PHYSICS, 2014, 119 (01) :11-17
[25]   Studying asphericity in the solar sound speed from mdi and gong data [J].
Antia, HM ;
Basu, S ;
Hill, F ;
Howe, R ;
Komm, RW ;
Schou, J .
PROCEEDINGS OF THE SOHO 10/GONG 2000 WORKSHOP ON HELIO- AND ASTEROSEISMOLOGY AT THE DAWN OF THE MILLENNIUM, 2001, 464 :45-50
[26]   Solar-Cycle Variability Results from the Solar Radiation and Climate Experiment (SORCE) Mission [J].
Woods, Thomas N. ;
Harder, Jerald W. ;
Kopp, Greg ;
Snow, Martin .
SOLAR PHYSICS, 2022, 297 (04)
[27]   Solar cycle variations of rotation and asphericity in the near-surface shear layer [J].
Kosovichev, A. G. ;
Rozelot, J. P. .
JOURNAL OF ATMOSPHERIC AND SOLAR-TERRESTRIAL PHYSICS, 2018, 176 :21-25
[28]   Variation of the Mn I 539.4 nm line with the solar cycle [J].
Danilovic, S. ;
Solanki, S. K. ;
Livingston, W. ;
Krivova, N. ;
Vince, I. .
ASTRONOMY & ASTROPHYSICS, 2016, 587
[29]   CONSISTENCY IN TRENDS IN HELIOSEISMIC DATA AND PHOTOSPHERIC TEMPERATURE DATA THROUGH THE SOLAR-CYCLE [J].
GOODE, PR ;
KUHN, JR .
ASTROPHYSICAL JOURNAL, 1990, 356 (01) :310-314
[30]   MODULATION OF INTERPLANETARY HYDROGEN DENSITY DISTRIBUTION DURING THE SOLAR-CYCLE [J].
RUCINSKI, D ;
BZOWSKI, M .
ASTRONOMY & ASTROPHYSICS, 1995, 296 (01) :248-263