Seismology of the Sun : Inference of Thermal, Dynamic and Magnetic Field Structures of the Interior
arXiv:1210.0467 · doi:10.1007/978-3-642-38167-6_19
Abstract
Recent overwhelming evidences show that the sun strongly influences the Earth's climate and environment. Moreover existence of life on this Earth mainly depends upon the sun's energy. Hence, understanding of physics of the sun, especially the thermal, dynamic and magnetic field structures of its interior, is very important. Recently, from the ground and space based observations, it is discovered that sun oscillates near 5 min periodicity in millions of modes. This discovery heralded a new era in solar physics and a separate branch called helioseismology or seismology of the sun has started. Before the advent of helioseismology, sun's thermal structure of the interior was understood from the evolutionary solution of stellar structure equations that mimicked the present age, mass and radius of the sun. Whereas solution of MHD equations yielded internal dynamics and magnetic field structure of the sun's interior. In this presentation, I review the thermal, dynamic and magnetic field structures of the sun's interior as inferred by the helioseismology.
To be published in the proceedings of the meeting "3rd International Conference on Current Developments in Atomic, Molecular, Optical and Nano Physics with Applications", December 14-16, 2011, New Delhi, India
References in corpus (9)
- Global-Scale Turbulent Convection and Magnetic Dynamo Action in the Solar Envelope
- Helioseismology and Solar Abundances
- Solar differential rotation and meridional flow: The role of a subadiabatic tachocline for the Taylor-Proudman balance
- Fresh insights on the structure of the solar core
- Magnetic fields in the Large-Scale Structure of the Universe
- CN-Cycle Solar Neutrinos and Sun's Primordial Core Metalicity
- Solar abundances and helioseismology: fine structure spacings and separation ratios of low-degree p modes
- Perspectives in Global Helioseismology, and the Road Ahead
- Probing the internal solar magnetic field through g-modes