Numerical simulations of slow standing waves in a curved solar coronal loop

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Abstract

We consider slow standing waves that are impulsively excited in a curved solar coronal loop. A numerical model we implement includes the effect of nonlinearity in a frame of two-dimensional ideal magnetohydrodynamics. We discuss a role of curved magnetic field lines on excitation and attenuation of slow standing waves.

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Selwa, M., & Murawski, K. (2006). Numerical simulations of slow standing waves in a curved solar coronal loop. In European Space Agency, (Special Publication) ESA SP. https://doi.org/10.1086/522602

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