Magnetohydrodynamic Processes in Solar Plasmas provides a comprehensive theory and practice of basic plasma processes in the Sun and heliosphere. It deals with the basic dynamics of the Sun from its interior up to its outer atmosphere in the framework of Magnetohydrodynamics. Topics covered include essential phenomena in the solar interior such as magnetism, dynamos and helioseismology and in the solar atmosphere such as waves, shocks, instabilities, reconnection and coronal heating. The book provides frontline research aspects of solar plasma processes. In addition, the content is relevant for astrophysical plasmas, laboratory plasmas, fluid dynamics and related basic fields. Magnetohydrodynamic Processes in Solar Plasmas not only focuses on the fundamentals of the processes under consideration but in addition it presents recent research developments. In this manner it forms an essential reference for researchers, academics and advanced students in solar physics, astrophysics and related disciplines.
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Abhishek Kumar Srivastava is a Professor of Physics at the Indian Institute of Technology (Banaras Hindu University), Varanasi, India. He works in the field of solar and heliospheric physics, and his research focuses on the study of magnetohydrodynamic waves, coronal heating, various solar eruptive phenomena and transients in the Sun's atmosphere.
Marcel Goossens is professor emeritus in Applied Mathematics in the Centre of mathematical Plasma Astrophysics of the Department of Mathematics of the KU Leuven. His research spans more than five decades and has dealt with global stellar oscillations, magnetohydrodynamic waves and instabilities in solar and space plasmas, and magnetohydrodynamic seismology of the solar atmosphere.
Iņigo Arregui is a physicist working as a staff researcher at the Instituto de Astrofísica de Canarias. He completed a PhD in Physics at Universitat de les Illes Balears with a thesis on magnetohydrodynamic waves in the solar atmosphere. His research focuses on the interpretation and modelling of wave activity in the solar atmosphere, designing tools for remote diagnostics of solar atmospheric plasmas, and the study of wave-based plasma heating mechanisms.
Magnetohydrodynamic Processes in The Solar Plasma provides comprehensive and up-to-date theory and practice of the fundamentals of heliospheric research and the Sun’s basic plasma processes, covering the dynamics of the solar interior to its exterior in the framework of magnetohydrodynamics. The book covers novel aspects of solar and heliospheric physics, astrophysics and space science, and fundamentals of the fluids and plasmas. Topics covered include key phenomena in the solar interior such as magnetism, dynamo physics, and helioseismology; dynamics and plasma processes in its exterior including fluid processes such as waves, shocks, instabilities, reconnection, and dynamics in the partially ionized plasma; and physics and science related to coronal heating, solar wind, and eruptive phenomena. The content has been developed to specifically cover fundamental physics-related descriptions and up-to-date developments of the scientific research related to these significant topics. The book therefore provides the entire fundamental and front-line research aspects of solar and heliospheric plasma processes, mainly in the context of solar plasma, however, the content also has larger implications for the astrophysical plasma, and laboratory plasma, fluid dynamics, and associated basic theories. It also includes additional supplementary content such as key instruments and experimental techniques in the form of appendices, boxed-off key information highlighting the most fundamental and key aspects, and worked examples with additional question sets.Magnetohydrodynamic Processes in The Solar Plasma covers both the fundamentals of the topics included as well as up-to-date and future developments in this research field, forming an essential, foundational reference for researchers, academics, and advanced students, in the field of solar physics and astrophysics, as well as neighboring disciplines.
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