Samenvatting
This paper presents the calculation of the bounce-averaged drift of trapped particles in a near-axis framework for axisymmetric and quasisymmetric magnetic fields that possess up-down and stellarator symmetry, respectively. This analytic consideration provides important insight on the dependence of the bounce-averaged drift on the geometry and stability properties of the field. In particular, we show that although the maximum- property is unattainable in quasisymmetric stellarators, one may approach it through increased plasma and triangular shaping, albeit going through a reduced precession scenario with potentially higher particle losses. The description of trapped particles allows us to calculate the available energy of trapped electrons analytically in two asymptotic regimes, providing insight into the behaviour of this measure of turbulence. It is shown that the available energy is intimately related to magnetohydrodynamics (MHD) stability, providing a potential synergy between this measure of gyrokinetic turbulence and MHD stability.
| Originele taal-2 | Engels |
|---|---|
| Artikelnummer | 905890521 |
| Aantal pagina's | 48 |
| Tijdschrift | Journal of Plasma Physics |
| Volume | 89 |
| Nummer van het tijdschrift | 5 |
| DOI's | |
| Status | Gepubliceerd - okt. 2023 |
Financiering
E.R. was supported by a grant by Alexander-von-Humboldt-Stiftung, Bonn, Germany, through a postdoctoral research fellowship. R.M. is partly supported by a grant from the Simons Foundation (560651, PH) and through the project ‘Shaping turbulence – building a framework for turbulence optimisation of fusion reactors’, with Project No. OCENW.KLEIN.013 of the research program ‘NWO Open Competition Domain Science’ which is financed by the Dutch Research Council (NWO).
| Financiers | Financiernummer |
|---|---|
| Simons Foundation | 560651, OCENW.KLEIN.013 |
| Nederlandse Organisatie voor Wetenschappelijk Onderzoek |
Vingerafdruk
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