Direct construction of optimized stellarator shapes. I. Theory in cylindrical coordinates
arXiv:1809.10233 · doi:10.1017/S0022377818001289
Abstract
The confinement of guiding center trajectories in a stellarator is determined by the variation of the magnetic field strength in Boozer coordinates , but depends on the flux surface shape in a complicated way. Here we derive equations relating in Boozer coordinates and the rotational transform to the shape of flux surfaces in cylindrical coordinates, using an expansion in distance from the magnetic axis. A related expansion was done by Garren and Boozer [Phys. Fluids B 3, 2805 (1991)] based on the Frenet-Serret frame, which can be discontinuous anywhere the magnetic axis is straight, a situation that occurs in the interesting case of omnigenity with poloidally closed contours. Our calculation in contrast does not use the Frenet-Serret frame. The transformation between the Garren-Boozer approach and cylindrical coordinates is derived, and the two approaches are shown to be equivalent if the axis curvature does not vanish. The expressions derived here help enable optimized plasma shapes to be constructed that can be provided as input to VMEC and other stellarator codes, or to generate initial configurations for conventional stellarator optimization.
References in corpus (2)
Cited by in corpus (47)
- Direct construction of optimized stellarator shapes. I. Theory in cylindrical coordinates
- Constructing stellarators with quasisymmetry to high order
- Direct construction of optimized stellarator shapes. II. Numerical quasisymmetric solutions
- Mapping the space of quasisymmetric stellarators using optimized near-axis expansion
- Direct construction of optimized stellarator shapes. III. Omnigenity near the magnetic axis
- A New Optimized Quasihelically SymmetricStellarator
- Near-Axis Expansion of Stellarator Equilibrium at Arbitrary Order in the Distance to the Axis
- Magnetic well and Mercier stability of stellarators near the magnetic axis
- Energetic particle loss mechanisms in reactor-scale equilibria close to quasisymmetry
- Single-Stage Stellarator Optimization: Combining Coils with Fixed Boundary Equilibria
- Single-stage gradient-based stellarator coil design: stochastic optimization
- The DESC Stellarator Code Suite Part III: Quasi-symmetry optimization
- Direct construction of stellarator-symmetric quasi-isodynamic magnetic configurations
- Measures of quasisymmetry for stellarators
- Construction of Quasisymmetric Stellarators Using a Direct Coordinate Approach
- Direct stellarator coil design using global optimization: application to a comprehensive exploration of quasi-axisymmetric devices
- Direct computation of magnetic surfaces in Boozer coordinates and coil optimization for quasi-symmetry
- Solving the problem of overdetermination of quasisymmetric equilbrium solutions by near-axis expansions: I. Generalised force balance
- Phases and phase-transitions in quasisymmetric configuration space
- Constructing the space of quasisymmetric stellarators
- The Use of Near-Axis Magnetic Fields for Stellarator Turbulence Simulations
- MHD stability and the effects of shaping: a near-axis view for tokamaks and quasisymmetric stellarators
- Figures of merit for stellarators near the magnetic axis
- Higher order theory of quasi-isodynamicity near the magnetic axis of stellarators
- Solving the problem of overdetermination of quasisymmetric equilbrium solutions by near-axis expansions. II. Circular axis stellarators
- Optimized quasisymmetric stellarators are consistent with the Garren-Boozer construction
- An adjoint method for neoclassical stellarator optimization
- Generalized Boozer coordinates: a natural coordinate system for quasisymmetry
- Vacuum magnetic fields with exact quasisymmetry near a flux surface. Part 1: Solutions near an axisymmetric surface
- Stellarator coil optimization supporting multiple magnetic configurations
- Ion-temperature-gradient stability near the magnetic axis of quasisymmetric stellarators
- Islands and current singularities in quasisymmetric toroidal plasmas
- Calculating the linear critical gradient for the ion-temperature-gradient mode in magnetically confined plasmas
- Normal Forms and Near-Axis Expansions for Beltrami Magnetic Fields
- Collisionless zonal-flow dynamics in quasisymmetric stellarators
- Connection between quasi-symmetric magnetic fields and anisotropic pressure equilibria in fusion plasmas
- Exact non-symmetric closed line vacuum magnetic fields in a topological torus
- Energetic Particle Tracing in Optimized Quasisymmetric Stellarator Equilibria
- The shear Alfvén continuum of quasisymmetric stellarators
- Rigidity of MHD equilibria to smooth incompressible ideal motion near resonant surfaces
- Direct optimization of neoclassical ion transport in stellarator reactors
- Gauge freedom in magnetostatics and the effect on helicity in toroidal volumes
- Integrability, Normal Forms, and Magnetic Axis Coordinates
- Charged particle dynamics near an X-point of a non-symmetric magnetic field with closed field lines
- Perturbing an axisymmetric magnetic equilibrium to obtain a quasi-axisymmetric stellarator
- Weakly Quasisymmetric Near-Axis Solutions to all Orders
- Application of Lagrangian techniques for calculating the on-axis rotational transform