wendelstein-7-x
FACILITY dossier

Wendelstein 7-X

World's largest stellarator fusion experiment at Max Planck Institute for Plasma Physics

FACILITY Facilities INTERNATIONAL Also: W7-X, Wendelstein 7X

01 Executive_Summary

Wendelstein 7-X is the world's largest stellarator fusion experiment, operated by the Max Planck Institute for Plasma Physics (IPP) in Greifswald, Germany. The device uses 50 superconducting coils to create a complex 3D magnetic field that confines plasma without requiring a plasma current. W7-X has achieved record plasma durations and validated the optimized stellarator concept.

02 Definition

03 Deep_Dive_Intelligence

Wendelstein 7-X (W7-X) is the world's largest and most advanced stellarator, located at the Max Planck Institute for Plasma Physics (IPP) in Greifswald, Germany. The device represents a major investment in stellarator research, with construction costs exceeding €1 billion and a project timeline spanning more than 20 years from conception to operation.

The stellarator concept, first proposed by Lyman Spitzer in 1951, uses external magnetic coils to confine plasma without requiring a plasma current (unlike tokamaks, which rely on a transformer-driven plasma current). This fundamental difference gives stellarators several potential advantages for power plant applications:

  • Inherent steady-state operation (no pulsed transformer drive needed)
  • No risk of plasma disruptions (which can damage tokamaks)
  • Easier maintenance access due to the modular coil design

However, stellarators historically suffered from poor plasma confinement compared to tokamaks. The breakthrough of W7-X was the use of advanced computational optimization to design a stellarator magnetic field that minimizes transport losses. The W7-X coil system consists of 50 non-planar superconducting coils, each uniquely shaped, that create the optimized 3D magnetic field. This optimization was performed using the same mathematical framework that underlies modern stellarator design.

W7-X began operation in December 2015 with first plasma. The device achieved several major milestones:

  • 2015: First plasma
  • 2018: High-temperature plasma with record discharge durations
  • 2022-2023: Record stellarator plasma durations of over 8 minutes (480 seconds) with high-temperature hydrogen plasma
  • Validation of the neoclassical transport optimization that is the core of the W7-X concept

The device uses a modular approach with island divertors for exhaust management, a critical technology for power plant reactors. The island divertor concept, validated at W7-X, provides a path for steady-state heat exhaust that is potentially more robust than the conventional divertor used in tokamaks.

W7-X has demonstrated that optimized stellarators can achieve confinement quality approaching that of tokamaks, removing the historical disadvantage of the stellarator concept. This validation has significant implications for fusion power plant design, as stellarators offer inherent advantages in steady-state operation and disruption avoidance.

The W7-X program is funded by the German federal and state governments and the European Union, and involves international collaboration including the US Department of Energy (through Princeton Plasma Physics Laboratory) and other partners. The success of W7-X has inspired private fusion companies like Proxima Fusion to pursue stellarator-based commercial fusion plants.

04 Network_Linkage

Wendelstein 7-X connects to the stellarator research community worldwide, including the Helically Symmetric Experiment (HSX) at the University of Wisconsin, the Large Helical Device (LHD) in Japan, and various concept studies. The optimization methodology developed for W7-X is the foundation for Proxima Fusion's commercial stellarator concept. The device is part of the European fusion program coordinated by EUROfusion.

05 Related_Entities (3)

05b Related_Topics (1)

06 Research_Findings (1)

Finding

World's largest stellarator, Greifswald Germany, IPP, 50 superconducting coils, record plasma durations, validated optimization.

07 Key_Findings

  • Inherent steady-state operation (no pulsed transformer drive needed)
  • No risk of plasma disruptions (which can damage tokamaks)
  • Easier maintenance access due to the modular coil design
  • 2018: High-temperature plasma with record discharge durations
  • 2022-2023: Record stellarator plasma durations of over 8 minutes (480 seconds) with high-temperature hydrogen plasma

09 Timeline_Mentions (1)

View Full Timeline → View on Network Graph →

10 FAQ

What is Wendelstein 7-X?
Wendelstein 7-X (W7-X) is the world's largest and most advanced stellarator, located at the Max Planck Institute for Plasma Physics (IPP) in Greifswald, Germany. The device represents a major investment in stellarator research, with construction costs exceeding €1 billion and a project timeline spanning more than 20 years from conception to operation.
What role does Wendelstein 7-X play in the research network?
Wendelstein 7-X is classified under the "Facilities" category, serving as World's largest stellarator fusion experiment at Max Planck Institute for Plasma Physics, belonging to the INTERNATIONAL vertical group. Wendelstein 7-X connects to the stellarator research community worldwide, including the Helically Symmetric Experiment (HSX) at the University of Wisconsin, the Large Helical Device (LHD) in...
What evidence supports the Wendelstein 7-X assessment?
The intelligence assessment for Wendelstein 7-X is supported by 1 primary source and 1 research finding. Key sources include "IPP Wendelstein 7-X". These documents provide the evidentiary basis for the analysis.
How does Wendelstein 7-X connect to other entities in the network?
Wendelstein 7-X is connected to 3 entities in the intelligence network, including Proxima Fusion (Organization), EUROfusion (Organization), and Marvel Fusion (Organization). Key relationships: Proxima Fusion: Spinoff using W7-X technology, EUROfusion: European fusion program coordination, ; Marvel Fusion: German fusion ecosystem. Wendelstein 7-X connects to the stellarator research community worldwide, including the Helically Symmetric Experiment (HSX) at the University of Wisconsin, the Large Helical Device (LHD) in...
What is the Wendelstein 7-X facility?
Wendelstein 7-X (W7-X) is the world's largest and most advanced stellarator, located at the Max Planck Institute for Plasma Physics (IPP) in Greifswald, Germany. The device represents a major investment in stellarator research, with construction costs exceeding €1 billion and a project timeline spanning more than 20 years from conception to...
What research findings mention Wendelstein 7-X?
Wendelstein 7-X appears in 1 research analysis document, including "European fusion — Wendelstein 7-X". World's largest stellarator, Greifswald Germany, IPP, 50 superconducting coils, record plasma durations, validated optimization.
How does Wendelstein 7-X fit into the broader intelligence network?
Wendelstein 7-X connects to the stellarator research community worldwide, including the Helically Symmetric Experiment (HSX) at the University of Wisconsin, the Large Helical Device (LHD) in Japan, and various concept studies. The optimization methodology developed for W7-X is the foundation for Proxima Fusion's commercial stellarator concept. The device is part of the European fusion program...
What are the alternative names or aliases for Wendelstein 7-X?
Wendelstein 7-X is also known as: W7-X and Wendelstein 7X. These alternative names appear across different source documents and may reflect codenames, abbreviations, or historical references.
What external sources document Wendelstein 7-X?
Wendelstein 7-X is documented by 1 external source, including 1 webpage. Notable references include "IPP Wendelstein 7-X".
What is the historical timeline for Wendelstein 7-X?
Wendelstein 7-X is referenced across documents spanning 1951–2023, with activity noted in 1951, 2015, and 2018. This temporal range is derived from the primary source documents in the research archive.
ID: wendelstein-7-x
Type: facility
Region: Europe
Last updated: Research database snapshot