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Leptocline as a shallow substructure of near-surface shear layer in 3D radiative hydrodynamic simulations
Irina N. Kitiashvili
,
A. G. Kosovichev
, A. A. Wray
, V. M. Sadykov
, G. Guerrero
Center for Computational Heliophysics
Physics
Research output
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Article
›
peer-review
19
Scopus citations
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Dive into the research topics of 'Leptocline as a shallow substructure of near-surface shear layer in 3D radiative hydrodynamic simulations'. Together they form a unique fingerprint.
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Keyphrases
Differential Rotation
100%
Meridional Flow
100%
Radiative Hydrodynamics
100%
Substructure
100%
Hydrodynamic Simulation
100%
Shear Layer
100%
Surface Shear
100%
Ionization Zone
100%
Solar Activity
50%
Rotating Flows
50%
Flow Profile
50%
Meridional Circulation
50%
Observational Evidence
50%
Solar Convection Zone
50%
Shallow Layer
50%
Radial Variation
50%
Local Domain
50%
Earth and Planetary Sciences
Meridional Flow
100%
Near-Surface Geology
100%
Shear Layer
100%
Solar Activity
50%
Meridional Circulation
50%
Physics
Shear Layer
100%
Solar Activity
50%
Convective Zones
50%
Meridional Circulation
50%