These quantities have been obtained at Joint European Torus ( JET), with a precision more than satisfactory for real-time applications, through a method, known as BETALI, that uses the Shafranov integrals S 1, S 2 and S 3. The main confinement parameters, like the internal inductance l i and the diamagnetic poloidal beta β DIA, are of particular relevance for a reliable real-time control system of next step tokamaks. Real-time determination of confinement parameters in JETīarana, Oliviero Joffrin, E. Furthermore, it appears its value increases as the number of effective adjoint degrees of freedom of a gauge theory plasma increases We find that a jet quenching parameter is gauge theory specific (not universal). We generalize analysis of LRW to strongly coupled nonconformal gauge theory plasma.
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Relating q-circumflex to a short-distance behavior of a certain lightlike Wilson loop, they used gauge theory-string theory correspondence to evaluate q-circumflex for the strongly coupled N=4 SU(N c ) gauge theory plasma.
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Recently Liu, Rajagopal, and Wiedemann (LRW) proposed a first principle, nonperturbative quantum field theoretic definition of ' jet quenching parameter' q-circumflex used in models of medium-induced radiative parton energy loss in nucleus-nucleus collisions at RHIC. Jet quenching parameters in strongly coupled nonconformal gauge theories This suggests that observed beams undergo earlier processing, if they are present at all. Finally, we present synthetic emission images of Hα and and note an excess of emission along the jet length as compared to observations. Our results indicate that a large velocity dispersion leads to a clump-clump collision-dominated flow which disrupts the jet beam. The goodness of fits, while poor in all simulations, are best when clump-clump collisions are minimal. We here extend the results presented in Yirak et al., including how analysis of individual observations may lead to spurious sinusoidal variation whose parameters vary widely over time, owing chiefly to interactions between clumps. By varying clumps' size, density, position, and velocity, we cover a range of parameter space motivated by observations of objects such as the Herbig-Haro object HH 34. We investigate the role discrete clumps embedded in an astrophysical jet play on the jet's morphology and line emission characteristics. Yirak, Kristopher Schroeder, Ed Frank, Adam Cunningham, Andrew J. THE EVOLUTION OF HETERGENEOUS 'CLUMPY JETS': A PARAMETER STUDY The appendix presents the parameters of the DEMO and NET under the topic headings: power, geometry, plasma, toroidal and poloidal magnetic field coils, first wall engineering, divertor physics, divertor engineering, and blanket. The latter study examines whether the technologies and design principles proposed for NET can be directly extrapolated to a demonstration (DEMO) reactor. The paper is an appendix to a study of the reactor relevance of the NET design concept.
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