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ARC

Tokamak

Associated Organization:

Commonwealth Fusion Systems

Publications

Mesh-based multiphysics coupling acceleration for fusion neutronics clustering for fusion blanket applications

Nuclear Fusion, 2026

Steady state, core, operational optimization of an ARC-like tokamak via plasma composition and shape

arXiv (physics.plasm-ph), 2026

Enhanced alpha channeling with spin-polarized fuel

arXiv (physics.plasm-ph), 2026

Predictions of high field side lower hybrid current drive in positive and negative triangularity DIII-D-class and ARC-class plasmas

Nuclear Fusion, 2026

Impact of energetic alpha particles on core turbulence in an ARC-class fusion power plant

arXiv (physics.plasm-ph), 2026

Core-edge integrated modeling of ARC: on the effect of impurity transport and detachment conditions

arXiv (physics.plasm-ph), 2026

Overview of the physics basis for the ARC fusion power plant

Journal of Plasma Physics, 2026

ARC physics basis–magnetohydrodynamics – ERRATUM

Journal of Plasma Physics, 2026

ARC disruption physics and strategy

Journal of Plasma Physics, 2026

The high-field tokamak physics basis for the ARC fusion power plant

Journal of Plasma Physics, 2026

See all 14 publications →

The ARC tokamak concept was created by the team at MIT that founded Commonwealth Fusion Systems (CFS). For operation, the ARC tokamak will make use of high temperature superconducting magnets.

The goal of the ARC fusion device is to serve as a commercial, compact power plant for the electrical grid. CFS currently aims to have the first ARC power plant up and running by the early 2030s. The first ARC location has been announced for Chesterfield County, Virginia.

  • ARC image 1

Publications

Mesh-based multiphysics coupling acceleration for fusion neutronics clustering for fusion blanket applications

Nuclear Fusion, 2026

Steady state, core, operational optimization of an ARC-like tokamak via plasma composition and shape

arXiv (physics.plasm-ph), 2026

Enhanced alpha channeling with spin-polarized fuel

arXiv (physics.plasm-ph), 2026

Predictions of high field side lower hybrid current drive in positive and negative triangularity DIII-D-class and ARC-class plasmas

Nuclear Fusion, 2026

Impact of energetic alpha particles on core turbulence in an ARC-class fusion power plant

arXiv (physics.plasm-ph), 2026

Core-edge integrated modeling of ARC: on the effect of impurity transport and detachment conditions

arXiv (physics.plasm-ph), 2026

Overview of the physics basis for the ARC fusion power plant

Journal of Plasma Physics, 2026

ARC physics basis–magnetohydrodynamics – ERRATUM

Journal of Plasma Physics, 2026

ARC disruption physics and strategy

Journal of Plasma Physics, 2026

The high-field tokamak physics basis for the ARC fusion power plant

Journal of Plasma Physics, 2026

See all 14 publications →
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