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May 22, 2024Nature37 citationsOpen Access

The solar dynamo begins near the surface

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GVGeoffrey M. VasilDLDaniel LecoanetKAKyle Augustson

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Abstract

Abstract The magnetic dynamo cycle of the Sun features a distinct pattern: a propagating region of sunspot emergence appears around 30° latitude and vanishes near the equator every 11 years (ref. 1 ). Moreover, longitudinal flows called torsional oscillations closely shadow sunspot migration, undoubtedly sharing a common cause 2 . Contrary to theories suggesting deep origins of these phenomena, helioseismology pinpoints low-latitude torsional oscillations to the outer 5–10% of the Sun, the near-surface shear layer 3,4 . Within this zone, inwardly increasing differential rotation coupled with a poloidal magnetic field strongly implicates the magneto-rotational instability 5,6 , prominent in accretion-disk theory and observed in laboratory experiments 7 . Together, these two facts prompt the general question: whether the solar dynamo is possibly a near-surface instability. Here we report strong affirmative evidence in stark contrast to traditional models 8 focusing on the deeper tachocline. Simple analytic estimates show that the near-surface magneto-rotational instability better explains the spatiotemporal scales of the torsional oscillations and inferred subsurface magnetic field amplitudes 9 . State-of-the-art numerical simulations corroborate these estimates and reproduce hemispherical magnetic current helicity laws 10 . The dynamo resulting from a well-understood near-surface phenomenon improves prospects for accurate predictions of full magnetic cycles and space weather, affecting the electromagnetic infrastructure of Earth.

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Vasil et al. (2024) studied this question.

synapsesocial.com/papers/68e68e6fb6db6435876152eehttps://doi.org/10.1038/s41586-024-07315-1
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Also Consider

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  1. 1Helioseismic Measurement of Solar Torsional Oscillations2002 · 208 citations
  2. 2A solar dynamo surface wave at the interface between convection and nonuniform rotation1993 · 527 citations
  3. 3The Topology of the Sun's Magnetic Field and the 22-YEAR Cycle.1961 · 1,493 citations
  4. 4The Current State of Solar Modeling1996 · 1,199 citations
  5. 5Confirmation of bistable stellar differential rotation profiles2014 · 88 citations