English

Polaris: a flexible stellarator demonstration experiment with simple modular coils

Plasma Physics 2026-07-28 v1

Abstract

We present the design, construction, and first plasma experiments of Polaris, a new small-scale stellarator experiment (major radius R ~ 0.4 m) located at the Swiss Plasma Center. Polaris consists of a relatively large vacuum vessel (~0.5 m^3) predominantly made of glass windows and inside which different sets of magnetic coils can be installed. A first modular coil configuration has been designed with six identical, circular, water-cooled copper coils toroidally arranged in an optimal way so that they generate a large volume of magnetic surfaces and rotational transform in vacuum (iota ~ 0.3). The total current in each coil goes up to ~ 5 kA, producing a magnetic field on-axis of B ~ 0.03 T. An RF antenna specifically designed to operate in vacuum delivers up to 2.5 kW of power to produce plasma via inductive coupling and electron-impact ionization. We present the engineering solutions adopted for the design of Polaris and illustrate the great experimental flexibility it enables. Time-averaged values and fluctuations of plasma density, electron temperature, and floating potential are measured at various toroidal locations, providing insights into the plasma equilibrium, electrostatic turbulence, and associated transport. The glass vacuum chamber of Polaris additionally provides unprecedented optical access to the entire plasma volume. With its original, flexible design, Polaris is a 'stellarator fish-tank', allowing interchangeable coil sets and exploration of various magnetic configurations. Furthermore, its low-temperature, low-density, high-neutral-pressure plasmas are relevant to stellarator edge physics, making Polaris a first-of-kind testbed for the fundamental investigation of stellarator edge-relevant physics.

Cite

@article{arxiv.2607.25409,
  title  = {Polaris: a flexible stellarator demonstration experiment with simple modular coils},
  author = {Simon P. H. Vincent and Joaquim Loizu and Matthieu Toussaint and Rémy Jacquier and Jérémy Salm and Philippe Guittienne and Matias Habib and Idil Sonmez and Christopher B. Smiet and Erol Balkovic and Rogerio Jorge and Alan G. Goodman and Ivo Furno and Christian Moura and William Matthey-Dorey and Steve Couturier and Frédéric Dolizy},
  journal= {arXiv preprint arXiv:2607.25409},
  year   = {2026}
}