collaborators

6 papers

physics.plasm-ph2026

The Geometry of Flux Surfaces with Quasi-Poloidal Symmetry

Rishin Madan, Wrick Sengupta, Elizabeth J. Paul +4

Quasi-poloidal (QP) magnetic fields have desirable properties for confining plasma: no radial drift of guiding centres (with positive implications for neoclassical transport), zero…

physics.plasm-ph2026

Compact quasiaxisymmetric stellarators, a near axisymmetric theory

Wrick Sengupta, Rogerio Jorge, Nikita Nikulsin +4

We develop a theory of ridges in compact stellarators with quasiaxisymmetry (QA). The equilibrium with finite plasma currents and pressure is modeled by ideal magnetohydrostatics (…

physics.plasm-ph2026

Optical analogy for stellarators: Ridges as caustics and coils as singularities

Wrick Sengupta, Stefan Buller, Rogerio Jorge +7

A common feature of most numerically optimized stellarator geometries is the presence of sharp ridges on outer flux surfaces, irrespective of the rotational transform. Despite thei…

physics.plasm-ph2026

Periodic Korteweg-de Vries soliton potentials generate quasisymmetric magnetic fields

W. Sengupta, N. Nikulsin, S. Buller +6

Quasisymmetry (QS) is a hidden symmetry of the magnetic field strength, B, that effectively confines charged particles in a three-dimensional toroidal plasma equilibrium. Here, we…

physics.plasm-ph2026

Geodesic extended modes in low magnetic shear tokamaks and stellarators

Richard Nies, Felix Parra

Theories of ion-scale microinstabilities in tokamaks and stellarators typically assume that the passing electrons respond adiabatically due to their fast propagation speed. However…

physics.plasm-ph2025

Periodic Korteweg-de Vries soliton potentials generate quasisymmetric magnetic field strength in a finite plasma-beta equilibrium

W. Sengupta, R. Madan, S. Buller +6

Quasisymmetry (QS) is a hidden symmetry of the magnetic field strength, B, that enables effective confinement of charged particles in a fully three-dimensional (3D) toroidal plasma…