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相关论文: Flow damping in stellarators close to quasisymmetr…

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Plasma flow is damped in stellarators because they are not intrinsically ambipolar, unlike tokamaks, in which the flux-surface averaged radial electric current vanishes for any value of the radial electric field. Only quasisymmetric…

等离子体物理 · 物理学 2015-06-19 Ivan Calvo , Felix I. Parra , J. Arturo Alonso , J. L. Velasco

Rotation is favorable for confinement, but a stellarator can rotate at high speeds if and only if it is sufficiently close to quasisymmetry. This article investigates how close it needs to be. For a magnetic field $\mathbf{B} = \mathbf{B}_0…

等离子体物理 · 物理学 2015-06-16 Ivan Calvo , Felix I. Parra , J. L. Velasco , J. Arturo Alonso

The linear collisionless damping of zonal flows is calculated for quasi-symmetric stellarator equilibria in flux-tube, flux-surface, and full-volume geometry. Equilibria are studied from the quasi-helical symmetry configuration of the…

等离子体物理 · 物理学 2023-08-15 J. Smoniewski , E. Sánchez , I. Calvo , M. J. Pueschel , J. N. Talmadge

Optimising stellarators for quasisymmetry leads to strongly reduced collisional transport and energetic particle losses compared to unoptimised configurations. Though stellarators with precise quasisymmetry have been obtained in the past,…

等离子体物理 · 物理学 2024-12-25 Richard Nies , Elizabeth J. Paul , Dario Panici , Stuart R. Hudson , Amitava Bhattacharjee

The linear collisionless plasma response to a zonal-density perturbation in quasisymmetric stellarators is studied, including the geodesic-acoustic-mode oscillations and the Rosenbluth--Hinton residual flow. While the geodesic-acoustic-mode…

等离子体物理 · 物理学 2025-02-05 Hongxuan Zhu , Z. Lin , A. Bhattacharjee

Quasisymmetry can greatly improve the confinement of energetic particles and thermal plasma in a stellarator. The magnetic field of a quasisymmetric stellarator at high plasma pressure is significantly affected by the bootstrap current, but…

等离子体物理 · 物理学 2022-08-17 Matt Landreman , Stefan Buller , Michael Drevlak

Maximising particle and energy confinement is crucial for achieving the sustained burning plasma conditions necessary to realise fusion energy. For stellarator reactors, one proposed strategy for avoiding destructive instabilities is to…

等离子体物理 · 物理学 2025-12-30 Adelle M. Wright , Benjamin J. Faber

Quasisymmetry (QS), a hidden symmetry of the magnetic field strength, is known to support nested flux surfaces and provide superior particle confinement in stellarators. In this work, we study the ideal MHD equilibrium and stability of…

等离子体物理 · 物理学 2024-02-06 W. Sengupta , N. Nikulsin , R. Gaur , A. Bhattacharjee

Recent advances in stellarator optimization have found nearly precise quasisymmetric configurations. These are expected to reduce the non-turbulent background plasma transport to acceptable neoclassical levels while removing nearly all…

等离子体物理 · 物理学 2025-12-09 Miguel Calvo-Carrera , Peter J. Catto

Quasisymmetric stellarators are an attractive class of optimised magnetic confinement configurations. The property of quasisymmetry (QS) is in practice limited to be approximate, and thus the construction requires measures that quantify the…

等离子体物理 · 物理学 2022-02-16 Eduardo Rodriguez , Elizabeth Paul , Amitava Bhattacharjee

The quasilinear particle flux arising from gyrokinetic instabilities is calculated in the electrostatic and collisionless approximation, keeping the geometry of the magnetic field arbitrary. In particular, the flux of electrons and heavy…

等离子体物理 · 物理学 2018-08-01 Per Helander , Alessandro Zocco

It is shown that in perfectly quasi-isodynamic stellarators, trapped particles with a bounce frequency much higher than the frequency of the instability are stabilizing in the electrostatic and collisionless limit. The collisionless…

等离子体物理 · 物理学 2015-09-15 J. H. E. Proll , P. Helander , J. W. Connor , G. G. Plunk

A method is given to rapidly compute quasisymmetric stellarator magnetic fields for plasma confinement, without the need to call a three-dimensional magnetohydrodynamic equilibrium code inside an optimization iteration. The method is based…

等离子体物理 · 物理学 2019-12-04 Matt Landreman , Wrick Sengupta

The gyrokinetic theory of the residual flow, in the electrostatic limit, is revisited, with optimized stellarators in mind. We consider general initial conditions for the problem, and identify cases that lead to a non-zonal residual…

等离子体物理 · 物理学 2024-04-12 G. G. Plunk , P. Helander

The stellarator as a concept of magnetic confinement fusion requires careful design to confine particles effectively. A design possibility is to equip the magnetic field with a property known as quasisymmetry. Though it is generally…

等离子体物理 · 物理学 2022-02-03 Eduardo Rodriguez , Amitava Bhattacharjee

A new optimized quasihelically symmetric configuration is described that has the desir-able properties of improved energetic particle confinement, reduced turbulent transportby 3D shaping, and non-resonant divertor capabilities. The…

We consider the symmetric simple exclusion with open boundaries that are in contact with particle reservoirs at different densities. The reservoir densities changes at a slower time scale with respect to the natural time scale the system…

概率论 · 数学 2019-04-30 Anna De Masi , Stefano Olla

This is the first of two papers about collisionless, electrostatic micro-instabilities in stellarators, with an emphasis on trapped-particle modes. It is found that, in so-called maximum-$J$ configurations, trapped-particle instabilities…

等离子体物理 · 物理学 2015-06-17 P. Helander , J. H. E. Proll , G. G. Plunk

When a relativistic star rotates slowly and rigidly, centrifugal forces flatten it slightly, thereby catalyzing a small admixture of quadrupolar vibration into its radial modes and a damping of the resulting quasi-radial modes. The damping…

广义相对论与量子宇宙学 · 物理学 2025-09-09 James B. Hartle , Kip S. Thorne

The new class of compact quasi-axisymmetric stellarators with a wide range of field periods offers the unique potential to combine the advantages of the two leading magnetic confinement fusion devices, tokamaks and stellarators. Here we…

等离子体物理 · 物理学 2024-09-04 Tobias M. Schuett , Sophia A. Henneberg
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