Publicaciones

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  • Magnetic Fields and the Outer Rotation Curve of M31
    Recent observations of the rotation curve of M31 show a rise of the outer part that cannot be understood in terms of standard dark matter models or perturbations of the galactic disk by M31's satellites. Here, we propose an explanation of this dynamical feature based on the influence of the magnetic field within the thin disk. We have considered
    Ruiz-Granados, B. et al.

    Fecha de publicación:

    11
    2010
    Número de citas
    25
  • Magnetic fields of opposite polarity in sunspot penumbrae
    Context. A significant part of the penumbral magnetic field returns below the surface in the very deep photosphere. For lines in the visible, a large portion of this return field can only be detected indirectly by studying its imprints on strongly asymmetric and three-lobed Stokes V profiles. Infrared lines probe a narrow layer in the very deep
    Franz, M. et al.

    Fecha de publicación:

    11
    2016
    Número de citas
    23
  • Magnetic Flux Emergence and its Interaction with AN Existing Coronal Field
    Not Available
    Galsgaard, K. et al.

    Fecha de publicación:

    11
    2005
    Número de citas
    1
  • Magnetic Flux Emergence and its Interaction with AN Existing Coronal Field
    Not Available
    Galsgaard, K. et al.

    Fecha de publicación:

    11
    2005
    Número de citas
    0
  • Magnetic flux emergence into the solar photosphere and chromosphere
    Aims: We model the emergence of magnetized plasma across granular convection cells and the low atmosphere, including layers up to the mid-chromosphere. Methods: Three-dimensional numerical experiments are carried out in which the equations of MHD and radiative transfer are solved self-consistently. We use the MURaM code, which assumes local
    Tortosa-Andreu, A. et al.

    Fecha de publicación:

    11
    2009
    Número de citas
    65
  • Magnetic Loops in the Quiet Sun
    We investigate the fine structure of magnetic fields in the atmosphere of the quiet Sun. We use photospheric magnetic field measurements from SUNRISE/IMaX with unprecedented spatial resolution to extrapolate the photospheric magnetic field into higher layers of the solar atmosphere with the help of potential and force-free extrapolation techniques
    Wiegelmann, T. et al.

    Fecha de publicación:

    11
    2010
    Número de citas
    39