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$\delta$-sunspots, with highly complex magnetic structures, are very productive in energetic eruptive events, such as X-class flares and homologous eruptions. We here study the formation of such complex magnetic structures by numerical…

太阳与恒星天体物理 · 物理学 2015-06-17 Fang Fang , Yuhong Fan

Our Sun exhibits strong convective dynamo action which results in magnetic flux bundles emerging through the stellar surface as magnetic spots. Global-scale dynamo action is believed to generate large-scale magnetic structures in the deep…

太阳与恒星天体物理 · 物理学 2014-03-05 Nicholas J. Nelson , Mark S. Miesch

We describe and analyze observations by the Solar Dynamics Observatory of the emergence of a small, bipolar active region within an area of unipolar magnetic flux that was surrounded by a circular, quiescent filament. Within only eight…

太阳与恒星天体物理 · 物理学 2018-08-08 Sally Dacie , Tibor Torok , Pascal Demoulin , Mark Linton , Cooper Downs , Lidia van Driel-Gesztelyi , David Long , James Leake

In 1969 Leighton developed a quasi-1D mathematical model of the solar dynamo, building upon the phenomenological scenario of Babcock(1961). Here we present a modification and extension of Leighton's model. Using the axisymmetric component…

太阳与恒星天体物理 · 物理学 2017-03-01 R. H. Cameron , M. Schuessler

We present an analysis of the formation of atmospheric flux ropes in a magnetohydrodynamic (MHD) solar flux emergence simulation. The simulation domain ranges from the top of the solar interior to the low corona. A twisted magnetic flux…

太阳与恒星天体物理 · 物理学 2015-06-17 David MacTaggart , Andrew Haynes

Over the last few years, numerical models of the behavior of solar magnetic flux tubes have gone from using methods that were essentially one-dimensional (i.e. the thin flux tube approximation), over more or less idealized two-dimensional…

天体物理学 · 物理学 2007-05-23 Bertil Dorch

We consider a dynamo wave in the solar convective shell for the kinematic $\alpha\omega$-dynamo model. The spectrum and eigenfunctions of the corresponding equations are derived analytically with the aid of the WKB method. Our main aim here…

天体物理学 · 物理学 2009-11-06 Victor Galitski , D. D. Sokoloff

Earlier observational studies have used the time evolution of emerging magnetic flux regions at the photosphere to infer their subsurface structures, assuming that the flux structure does not change significantly over the near-surface…

太阳与恒星天体物理 · 物理学 2016-06-14 Chia-Hsien Lin , Yu-Chen Chen

We present the new results of the two-dimensional numerical experiments on the cross-sectional evolution of a twisted magnetic flux tube rising from the deeper solar convection zone (-20,000 km) to the corona through the surface. The…

太阳与恒星天体物理 · 物理学 2015-05-28 Shin Toriumi , Takaaki Yokoyama

We present the first 3D MHD study in spherical geometry of the non-linear dynamical evolution of magnetic flux tubes in a turbulent rotating convection zone. We study numerically the rise of magnetic toroidal flux ropes from the base of a…

太阳与恒星天体物理 · 物理学 2011-02-11 Laurene Jouve , Allan Sacha Brun

We simulate the buoyant rise of a magnetic flux rope from the solar convection zone into the corona to better understand the energetic coupling of the solar interior to the corona. The magnetohydrodynamic model addresses the physics of…

太阳与恒星天体物理 · 物理学 2015-06-03 Fang Fang , Ward Manchester , William P. Abbett , Bart van der Holst

The buoyant transport of magnetic fields from the solar interior towards the surface plays an important role in the emergence of active regions, the formation of sunspots and the overall solar dynamo. Observations suggest that toroidal flux…

太阳与恒星天体物理 · 物理学 2018-06-27 Bhishek Manek , Nicholas Brummell , Dongwook Lee

Sunspots and active regions observed on the solar surface are widely believed to be manifestations of compact predominantly-toroidal magnetic field structures (``flux tubes") that emerge by magnetic buoyancy from the deeper interior of the…

太阳与恒星天体物理 · 物理学 2024-06-21 Bhishek Manek , Nicholas Brummell

We have simulated the 3D emergence and interaction of two twisted flux tubes, which rise from the interior into the outer atmosphere of the Sun. We present evidence for the multiple formation and eruption of flux ropes inside the emerging…

天体物理学 · 物理学 2009-11-13 V. Archontis , A. W. Hood

We model the evolution of buoyant magnetic flux tubes in the Sun's convection zone. A flux tube is assumed to lie initially near the top of the stably stratified radiative core below the convection zone, but a segment of it is perturbed…

太阳与恒星天体物理 · 物理学 2015-06-01 George H. Fisher , Dean-Yi Chou , Alexander N. McClymont

Using a 3D non-linear mean-field solar dynamo model, we investigate the magnetic helicity flux and magnetic twist, and tilt parameters of bipolar magnetic regions (BMRs) emerging from the solar convection zone due to the magnetic buoyancy…

太阳与恒星天体物理 · 物理学 2025-08-04 V. V. Pipin , Shangbin Yang , A. G. Kosovichev

We investigate the rising flux tube and the formation of sunspots in an unprecedentedly deep computational domain that covers the whole convection zone with a radiative magnetohydrodynamics simulation. Previous calculations had shallow…

太阳与恒星天体物理 · 物理学 2020-04-08 H. Hotta , H. Iijima

We present three-dimensional numerical simulations of the rise and fragmentation of twisted, initially horizontal magnetic flux tubes which evolve into emerging Omega-loops. The flux tubes rise buoyantly through an adiabatically stratified…

天体物理学 · 物理学 2009-10-31 W. P. Abbett , G. H. Fisher , Y. Fan

We demonstrate that a magneto-convection simulation incorporating essential physical processes governing solar surface convection exhibits turbulent small-scale dynamo action. By presenting a derivation of the energy balance equation and…

太阳与恒星天体物理 · 物理学 2010-04-23 Jonathan Pietarila Graham , Robert Cameron , Manfred Schuessler

Solar eruptions arise from instabilities or loss of equilibria in the solar atmosphere, but routinely inferring the precise magnetic and plasma properties that lead to eruptions is not currently practical using synoptic solar observations.…

太阳与恒星天体物理 · 物理学 2026-01-16 Lucas A. Tarr , N. Dylan Kee , James E. Leake , Mark G. Linton , Peter W. Schuck