activity
20242026
collaborators

5 papers

physics.plasm-ph2026

Designing A Buildable Optimized Stellarator to Confine Electron-Positron Plasmas

Pedro F. Gil, Jason Smoniewski, Paul Huslage +7

In this paper, the design of the the plasma equilibrium and superconducting coils for the Electrons and Positrons in an Optimized Stellarator EPOS experiment is presented. With new…

physics.plasm-ph2026

Stochastic single-stage stellarator optimization using fixed-boundary equilibria

Pedro F. Gil, Jason Smoniewski, Rogerio Jorge +2

In this paper, single-stage stellarator optimization is combined with stochastic coil optimization to improve the robustness of the stellarator as compared to deterministic methods…

physics.ins-det2025

Manufacturing Tolerances of Non-Planar Coils for an Optimized Tabletop Stellarator

Pedro F. Gil, Vitali Brack, Tristan Schuler +2

Stellarator coils are known for their complexity and departure from planarity, along with tight manufacturing tolerances in order to achieve the target magnetic field accuracy. The…

physics.ins-det2025

A Non-planar ReBCO Test Coil with 3D-printed Aluminum Support Structure for the EPOS Stellarator

Paul Huslage, Tristan Schuler, Pedro F. Gil +7

We report on the test of a small scale, non-planar coil using non-insulated ReBCO tape wound on a 3D-printed aluminum support structure. A 3D-scan of the winding frame which was pr…

physics.plasm-ph2024

Electromagnetic coil optimization for reduced Lorentz forces

Siena Hurwitz, Matt Landreman, Alan Kaptanoglu

The reduction of magnetic forces on electromagnetic coils is an important consideration in the design of high-field devices such as the stellarator or tokamak. Unfortunately, these…