The emergence of tilted bipolar active regions (ARs) and the dispersal of their flux, mediated via processes such as diffusion, differential rotation, and meridional circulation, is believed to be responsible for the reversal of the Sun's polar field. This process (commonly known as the Babcock-Leighton mechanism) is usually modeled as a near-surface, spatially distributed alpha-effect in kinematic mean-field dynamo models. However, this formulation leads to a relationship between polar field strength and meridional flow speed which is opposite to that suggested by physical insight and predicted by surface flux-transport simulations. With this in mind, we present an improved double-ring algorithm for modeling the Babcock-Leighton mechanism ...
We examine the impact of surface inflows into activity belts on the operation of solar cycle models ...
It is proposed that the observed near-surface inflows towards the active regions and sunsp...
The poleward migration of the active regions' magnetic flux on the solar surface plays an important ...
The emergence of tilted bipolar active regions (ARs) and the dispersal of their flux, mediated via p...
International audienceContext. Magnetohydrodynamic interactions between plasma flows and magnetic fi...
Context. The Babcock-Leighton flux-transport model is a widely accepted dynamo model of the Sun that...
Abstract. We explore a full sphere (2D axisymmetric) kinematic solar dynamo model based on the Babco...
Over the past several decades, Flux-Transport Dynamo (FTD) models have emerged as a popular paradigm...
We develop a three-dimensional kinematic self-sustaining model of the solar dynamo in which the polo...
Aims. We aim to investigate how converging flows towards active regions affect the surface transport...
We develop a model of the solar dynamo in which, on the one hand, we follow the Babcock-Leighton app...
The convective flows observed on the photosphere (e.g., supergranulation, granulation) play a key ro...
The emergence of tilted bipolar active regions (ARs) and the dispersal of their flux, mediated via p...
Abstract Over the past several decades, Flux-Transport Dynamo (FTD) models have emerged as a popular...
Context.The Sun is a magnetic star whose magnetism and cyclic activity is linked to the existence of...
We examine the impact of surface inflows into activity belts on the operation of solar cycle models ...
It is proposed that the observed near-surface inflows towards the active regions and sunsp...
The poleward migration of the active regions' magnetic flux on the solar surface plays an important ...
The emergence of tilted bipolar active regions (ARs) and the dispersal of their flux, mediated via p...
International audienceContext. Magnetohydrodynamic interactions between plasma flows and magnetic fi...
Context. The Babcock-Leighton flux-transport model is a widely accepted dynamo model of the Sun that...
Abstract. We explore a full sphere (2D axisymmetric) kinematic solar dynamo model based on the Babco...
Over the past several decades, Flux-Transport Dynamo (FTD) models have emerged as a popular paradigm...
We develop a three-dimensional kinematic self-sustaining model of the solar dynamo in which the polo...
Aims. We aim to investigate how converging flows towards active regions affect the surface transport...
We develop a model of the solar dynamo in which, on the one hand, we follow the Babcock-Leighton app...
The convective flows observed on the photosphere (e.g., supergranulation, granulation) play a key ro...
The emergence of tilted bipolar active regions (ARs) and the dispersal of their flux, mediated via p...
Abstract Over the past several decades, Flux-Transport Dynamo (FTD) models have emerged as a popular...
Context.The Sun is a magnetic star whose magnetism and cyclic activity is linked to the existence of...
We examine the impact of surface inflows into activity belts on the operation of solar cycle models ...
It is proposed that the observed near-surface inflows towards the active regions and sunsp...
The poleward migration of the active regions' magnetic flux on the solar surface plays an important ...