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DTT

Tokamak

Suppliers:

2

Associated Organizations:

Eni ,

National Institute for Nuclear Physics ,

University of Milano-Bicocca ,

CETMA ,

University of Tuscia ,

Italian National Agency for New Technologies, Energy, and Sustainable Economic Development ,

Polytechnic University of Turin ,

Consorzio RFX ,

National Research Council ,

University of Rome Tor Vergata ,

CREATE

Publications

The status and design challenges of the heating and current drive systems for DTT

Nuclear Fusion, 2026

Remote handling for the DTT divertor: From requirements elicitation to kinematic verification of the Central Cassette End-Effector

Fusion Engineering and Design, 2026

Implementation and first application of EMC3-EIRENE on DTT for assessing the heat load on the ICRH antenna

arXiv (physics.plasm-ph), 2026

Orbital frequency spectrum and resonant response of realistic tokamak equilibria

Nuclear Fusion, 2026

Iterative design and preliminary assessment of the DTT vacuum vessel interface to divertor

Fusion Engineering and Design, 2026

The Divertor Tokamak Test Facility Research Plan

Nuclear Fusion, 2026

Advances in 3D transient plasma dynamics and control through MHD and hybrid fluid-kinetic simulations with JOREK

Nuclear Fusion, 2026

Interface Management in the Development of the DTT Remote Handling Facility---REMHAT

IEEE Transactions on Plasma Science, 2026

Challenges of the DTT ECH Launchers and Options Under Study

IEEE Transactions on Plasma Science, 2026

Progress in the Realization of Solid-State ICRH Transmitters for DTT

IEEE Transactions on Plasma Science, 2026

See all 11 publications →

The Divertor Tokamak Test (DTT) facility is currently under construction at the Frascati ENEA Research Center in Frascati, Italy. The project is being overseen by a consortium of public companies, universities, and the Italian government. The goal of DTT is to test different solutions for viable tokamak divertors.

  • DTT image 1

Suppliers

SIMIC

Category

Magnet Cases

Description

The prototype of the toroidal field (TF) coil casing has been produced by SIMIC for the DTT facility.

Cryomagnetics

Category

Low Temperature Superconductor (LTS) Magnets

Description

Supplied the superconducting magnets necessary for plasma heating gyrotrons from THALES.

Publications

The status and design challenges of the heating and current drive systems for DTT

Nuclear Fusion, 2026

Remote handling for the DTT divertor: From requirements elicitation to kinematic verification of the Central Cassette End-Effector

Fusion Engineering and Design, 2026

Implementation and first application of EMC3-EIRENE on DTT for assessing the heat load on the ICRH antenna

arXiv (physics.plasm-ph), 2026

Orbital frequency spectrum and resonant response of realistic tokamak equilibria

Nuclear Fusion, 2026

Iterative design and preliminary assessment of the DTT vacuum vessel interface to divertor

Fusion Engineering and Design, 2026

The Divertor Tokamak Test Facility Research Plan

Nuclear Fusion, 2026

Advances in 3D transient plasma dynamics and control through MHD and hybrid fluid-kinetic simulations with JOREK

Nuclear Fusion, 2026

Interface Management in the Development of the DTT Remote Handling Facility---REMHAT

IEEE Transactions on Plasma Science, 2026

Challenges of the DTT ECH Launchers and Options Under Study

IEEE Transactions on Plasma Science, 2026

Progress in the Realization of Solid-State ICRH Transmitters for DTT

IEEE Transactions on Plasma Science, 2026

See all 11 publications →
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