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      A viable non-axisymmetric non-force-free field to represent solar active regions

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          Abstract

          A combination of analytical calculations and vectormagnetogram data are utilized to develop a non-axisymmetric non-force-free magnetic field and asses its viability in describing solar active regions. For the purpose, we construct a local spherical shell where a planar surface, tangential to the inner sphere, represents a Cartesian cutout of an active region. The magnetic field defined on the surface is then correlated with magnetograms. The analysis finds the non-axisymmetric non-force-free magnetic field, obtained by a superposition of two linear-force-free fields, correlates reasonably well with magnetograms.

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          Author and article information

          Journal
          2016-11-18
          Article
          10.1063/1.4967759
          1611.05978
          68683f09-3bfd-4d3a-a7e3-54e79440fded

          http://arxiv.org/licenses/nonexclusive-distrib/1.0/

          History
          Custom metadata
          Phys. Plasmas 23, 114504 (2016)
          5 pages, 3 figures, Published in Physics of Plasmas
          astro-ph.SR

          Solar & Stellar astrophysics
          Solar & Stellar astrophysics

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