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Fusion energy: Progress, partnerships, and the path to deployment
Over the past decade, fusion energy has moved decisively from scientific aspiration toward a credible pathway to a new energy technology. Thanks to long-term federal support, we have significantly advanced our fundamental understanding of plasma physics—the behavior of the superheated gases at the heart of fusion devices. This knowledge will enable the creation and control of fusion fuel under conditions required for future power plants. Our progress is exemplified by breakthroughs at the National Ignition Facility and the Joint European Torus.
J. P. Goedbloed
Fusion Science and Technology | Volume 45 | Number 2 | March 2004 | Pages 85-94
Technical Paper | Plasma and Fusion Energy Physics - Equilibrium and Instabilities | doi.org/10.13182/FST04-A472
Articles are hosted by Taylor and Francis Online.
In this paper we will discuss the theoretical framework of ideal MHD stability. We first show that the Alfvén wave is of central importance for the understanding of macroscopic plasma dynamics and, hence, of MHD stability. In section 2 we introduce the elements of spectral theory needed for our study, and in section 3 we apply these methods to inhomogeneous plasmas in cylinder geometry. Conclusions are drawn in section 4.