3/20/2023 0 Comments Plasma physicsLearn more about the Magnetized Plasma Research Laboratory located in the Physics Department at Auburn University. These studies also include the development of new plasma sources and new in-situ and optical diagnostic tools. Learn more about the collaboration between Auburn University and the W7-X stellarator located in Greifswald, Germany.įaculty: Ennis, Guazzotto, Hanson, Hartwell, Maurer, Schmitt Basic Plasma Physicsīasic plasma physics research focuses on research of fundamental process that occur in plasma - such as particle and energy transport, plasma instabilities, thermodynamics of plasmas, microgravity studies, and the physics of highly magnetized plasmas. Learn more about the Compact Toroidal Hybrid experiment located in the Physics Department at Auburn University. Auburn faculty and students are actively engaged in experimental, theoretical and computational plasma physics research related to the development of fusion energy. MSSLs Space Plasma Physics Group studies the interaction between the Sun and the Earth that leads to phenomena such as the Northern Lights and Space. During the fusion reaction, energy is released which could be harnessed to generate heat and electricity. A rigorous introduction to the plasma state will be followed by a description of the models, from single particle, to kinetic and fluid, which can be applied to study its dynamics. Fusion drives the sun and creates heavy elements in the core of stars. This physics course, taught by world-renowned experts of the field, gives you the opportunity to acquire a basic knowledge of plasma physics. deuterium and tritium) to form heavier elements. Fusion Energy Researchįusion is a process that combines atomic nuclei of light elements, such as isotopes of hydrogen (e.g. Plasma physics research at Auburn includes both experimental and theoretical activities involving fusion energy, basic plasma physics, dusty plasmas and space plasmas. Subject coverage includes plasma confinement, low-temperature plasmas, high-energy density plasma science, atmospheric plasmas, and nuclear plasma physics. Laboratory plasmas are utilized for investigating the potential of fusion energy, studying basic plasma physics phenomena, industrial processes, and lighting. Physics of Plasmas is the largest journal in plasma physics publishing in all areas of experimental and theoretical plasma physics. Naturally occurring plasmas include both astrophysical and terrestrial phenomena such as interstellar nebulae, the solar wind, the aurora borealis and lightning. Plasmas exist over a very broad range of parameters in both natural and laboratory environments. Plasmas represent the fourth state of matter in which electrons are dissociated from atomic nuclei and long-range electric and magnetic forces give rise to collective behavior such as shielding, drifts, waves and instabilities.
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