Alfvén Waves in Simulations of Solar Photospheric Vortices


Autoria(s): Shelyag, S.; Cally, P. S.; Reid, A.; Mathioudakis, M.
Data(s)

01/10/2013

Resumo

Using advanced numerical magneto-hydrodynamic simulations of the magnetized solar photosphere, including non-gray radiative transport and a non-ideal equation of state, we analyze plasma motions in photospheric magnetic vortices. We demonstrate that apparent vortex-like motions in photospheric magnetic field concentrations do not exhibit "tornado"-like behavior or a "bath-tub" effect. While at each time instance the velocity field lines in the upper layers of the solar photosphere show swirls, the test particles moving with the time-dependent velocity field do not demonstrate such structures. Instead, they move in a wave-like fashion with rapidly changing and oscillating velocity field, determined mainly by magnetic tension in the magnetized intergranular downflows. Using time-distance diagrams, we identify horizontal motions in the magnetic flux tubes as torsional Alfvén perturbations propagating along the nearly vertical magnetic field lines with local Alfvén speed.

Identificador

http://pure.qub.ac.uk/portal/en/publications/alfven-waves-in-simulations-of-solar-photospheric-vortices(1336ed63-0cbe-4e61-9eaf-611e9834b29c).html

Idioma(s)

eng

Direitos

info:eu-repo/semantics/restrictedAccess

Fonte

Shelyag , S , Cally , P S , Reid , A & Mathioudakis , M 2013 , ' Alfvén Waves in Simulations of Solar Photospheric Vortices ' The Astrophysical Journal Letters, Volume 776, Issue 1, article id. L4, 4 pp. (2013). , vol 776 .

Palavras-Chave #magnetohydrodynamics: MHD #plasmas #Sun: magnetic fields #Sun: photosphere
Tipo

article