
UK JET Decommissioning Project to Trial Asset-Based Decommissioning Approach
The JET Decommissioning and Repurposing (JDR) project recently announced that it will trial an asset-based decommissioning approach in three areas of the JET facility during the next phase of work. These areas were once part of the power supply infrastructure during JET plasma operations. This trial work will support the overall development of the Culham Campus and, in conjunction with the Strategic Investment and Development for Energy and AI (STRIDE) programme, facilitate land remediation to create conditions for the installation of a fourth supergrid transformer. JDR has signed a contract with Ramco UK to undertake the relevant trial work. JDR Engineering Integration Manager Steve...
2026-08-28

U.S. Fusion Company Advances Deuterium-Helium-3 Fusion Testing
American Fusion Inc. on August 27 announced progress in ongoing testing of the Texatron Fusion Engine and released computational and experimental observations regarding the device's ability to achieve deuterium-helium-3 (D-³He) fusion conditions. The company stated that the test program is evaluating two Texatron configurations at approximately 500 kilowatts and 5 megawatts, with the core technical approach being proprietary pulsed magnetic compression. Texatron's R&D focus is on utilizing short-duration, high-intensity electromagnetic pulses to compress and heat plasma in extremely short timeframes, simultaneously creating the conditions required for fusion, including high temperature, high pressure, high density, and a certain confinement time. American Fusion Inc...
2026-08-28

France's ITER research program may start before 2034
Scientific preparation work for the International Thermonuclear Experimental Reactor (ITER) is currently about 7 months ahead of the original schedule, and the research program may start earlier than the previously set target of 2034. Anatoly Krasilnikov, Director of the ITER Project Center at Rosatom, revealed this progress during the Technoprom-2026 forum. Krasilnikov stated that the project team no longer uses the milestone term "first plasma," but has instead adjusted the objective to "start of the research program," with a target date of 2034. Based on the current progress, the work is 7 months ahead of schedule, and there is a possibility of achieving the goal ahead of time...
2026-08-28

Japan to Build Fusion Tritium Fuel Research Base in Aomori Prefecture
Japan's Ministry of Education, Culture, Sports, Science and Technology (MEXT) has decided to establish a new fusion power generation research base in Aomori Prefecture, focusing on tritium fuel handling technology. The base will target the development needs of fusion demonstration projects in the 2030s, promoting joint research and development among industry, government, and academia. MEXT plans to include approximately 100 billion yen in fusion development-related funding in its budget request for the next fiscal year. Fusion power generation releases energy through the fusion reaction of deuterium and tritium nuclei, a principle similar to the energy generation process inside the sun. Unlike traditional nuclear power that relies on nuclear fission chain reactions, fusion reactions carry a lower risk of runaway, leading many countries to view it as an important direction for future energy technology...
2026-08-28

U.S. Marathon Fusion Demonstrates Hydrogen and Lithium Isotope Enrichment Technology
U.S.-based Marathon Fusion announced on August 27 that it has successfully demonstrated hydrogen and lithium isotope enrichment technology using its proprietary plasma centrifuge. The company stated that this advancement addresses the fuel cycle needs of fusion energy and related isotope supply requirements. In the deuterium-tritium fusion pathway, hydrogen isotope processing is critical to the continuous operation of fusion devices, while lithium isotope enrichment is closely tied to tritium production. The U.S. Department of Energy (DOE) released its "Fusion Science and Technology Roadmap" in June of this year, which identifies tritium processing as one of the core challenges, noting that related progress is essential for achieving sustained deuterium-tritium fusion operation and validating fusion as a large-scale energy form...
2026-08-28

Japan's Helical Fusion and Tohoku University Launch Social Communication Research on Fusion Energy
Helical Fusion recently announced that it has launched a joint research project with the Takahashi-Kariwara Laboratory of the Graduate School of Engineering at Tohoku University in August 2026, focusing on ideal communication methods for the social implementation of fusion energy. The project is planned to last approximately one year, with a focus on exploring the communication methods, dialogue mechanisms, and decision-making pathways required for fusion energy to move toward social application. According to the project plan, both parties will examine cases of existing advanced technologies in areas such as social acceptance and risk perception to study communication strategies needed for the stable application of fusion energy in future society. The research also plans to introduce...
2026-08-27

South Korea's POSCO Group Invests in Japanese Fusion Company Kyoto Fusion Engineering
South Korea's POSCO Group has invested in Japanese fusion energy company Kyoto Fusion Engineering (KF) to establish an early presence in the global fusion energy market and explore new business opportunities in future steel, specialty materials, and energy infrastructure. According to industry sources on the 27th, POSCO Group participated in Kyoto Fusion Engineering's Series D funding round. The investment was made through the Korea-Japan Fusion Fund, established by IMM Investment Japan (IMMJ) together with Korean and Japanese investors. POSCO Holdings and POSCO International also contributed to the fund...
2026-08-27

Iran Says Nuclear Fusion to Become Priority in Nuclear Industry Development
At a national Government Week celebration ceremony held in Tehran, Mohammad Eslami stated that developing nuclear fusion is a priority direction for the future of Iran's nuclear industry. Iran needs to rely on its domestic capabilities, knowledge-based enterprises, and universities to drive progress in related fields. Eslami said that the innovation network of the Atomic Energy Organization of Iran (AEOI) is providing support for nuclear fusion activities, shifting related work from the technology demonstration stage further toward system development and capacity building. He also stated that the establishment of the Non-Destructive Testing (NDT) training center is an initiative to enhance industrial quality, promote technological advancement, and cultivate domestic professional expertise...
2026-08-27

South Korea's KSTAR to Conduct Long-Pulse Fusion Research in Tungsten Environment with European Institutions
The Korea Institute of Fusion Energy (KFE) announced on August 27 that it has signed implementation agreements with multiple fusion research institutions in France, Italy, Germany, and Finland to conduct joint research on long-duration plasma operation in a tungsten environment using the Korea Superconducting Tokamak Advanced Research (KSTAR) device. Partner institutions include the French Alternative Energies and Atomic Energy Commission (CEA), the Italian National Agency for New Technologies, Energy and Sustainable Economic Development (ENEA), the Max Planck Institute for Plasma Physics (IPP) in Germany, and the VTT Technical Research Centre of Finland (VTT). The institutions will focus on key technologies required for long-pulse operation of future fusion reactors...
2026-08-27

AMPERA and Lawrence Livermore National Laboratory Collaborate to Develop Advanced Nuclear Fuel
AMPERA announced on August 26 that it has established a strategic partnership with Lawrence Livermore National Laboratory (LLNL), which operates under the U.S. Department of Energy (DOE) National Nuclear Security Administration (NNSA) system. The two parties will collaborate on next-generation advanced nuclear fuels, with a focus on applications such as compact nuclear energy systems and subcritical reactor platforms. Under the collaboration arrangement, the two parties will jointly advance the development of manufacturing processes related to tristructural isotropic (TRISO) fuel. Project objectives include improving the reliability, licensability, and scalability of fuel manufacturing,...
2026-08-27

Japan's JT-60SA Experimental Team Advances Preparations for Next Operation Phase
Preparations for the next phase of JT-60SA experimental activities are underway. The technical team is carrying out integrated commissioning as planned, while the experimental team is simultaneously refining related tools and software to enhance scientific output capabilities for the next operation phase. During a training course organized by QST, EUROfusion participants are learning how to configure discharge settings using the Human-Machine Interface (HMI) in preparation for the next JT-60SA campaign. Image credit: QST. The Third JT-60SA Experimental Team Workshop was held from July 27 to 31, 2026, at the Naka Institute of the National Institutes for Quantum Science and Technology (QST) in Japan. Approximately 50 experts attended, including 20 representatives from Europe...
2026-08-26

U.S. Fusion Roadmap Targets Early Power Plant Deployment by Mid-2030s
The U.S. Department of Energy (DOE) recently released the "Fusion Science and Technology Roadmap," proposing to accelerate the deployment of early fusion power plants by the mid-2030s. The roadmap represents a key federal-level arrangement to advance fusion technology from experimental research toward engineering and commercialization, coordinated by the Office of Fusion established in November 2025. Unlike existing nuclear power plants that release energy through fission reactions, fusion devices attempt to fuse light atomic nuclei together, with an energy source principle identical to that of the Sun. Fusion power is regarded as a potential low-carbon energy direction, but the industry remains in the experimental and demonstration stage, with private developers yet to achieve commercial-scale net energy gain, i.e...
2026-08-26

US Pacific Fusion Breaks Ground on $1 Billion Fusion Facility in New Mexico
On August 25, local time, Pacific Fusion launched construction of a research and manufacturing campus in Albuquerque, New Mexico, USA. The project involves an investment of approximately $1 billion and will be used to build the company's fusion demonstration system, with goals including achieving net facility gain and producing high-yield fusion energy pulses. The campus is located in the Mesa del Sol area of Albuquerque. According to Pacific Fusion's plan, the demonstration system aims to achieve net energy gain at the facility level by 2030, meaning the fusion device outputs more energy than the total energy initially stored in the equipment. The company stated that if this goal is achieved, it will mark a significant technological milestone in the commercialization of fusion energy...
2026-08-26

Japan Completes Cryogenic Test of World's Largest Superconducting Toroidal Field Coil for ITER
Japan's National Institutes for Quantum Science and Technology (QST) and Toshiba Corporation announced on August 25 that they had successfully completed the first cryogenic current test of the world's largest superconducting toroidal field coil at the construction site of the International Thermonuclear Experimental Reactor (ITER). The test was conducted at an operating temperature of approximately minus 269 degrees Celsius, marking a critical technical milestone before ITER's commissioning. The superconducting toroidal field coil, also known as the TF coil, installed in the test facility is a key component of ITER's superconducting magnet system, used to generate the strong magnetic field required to confine plasma. During the test, the team cooled the coil from room temperature to cryogenic conditions, confirmed its transition to the superconducting state, and for the first time achieved stable conduction of 10,000 amperes of current while the coil was in the superconducting state.
2026-08-25

U.S. Department of Energy Extends Princeton University Contract to Operate PPPL
The U.S. Department of Energy (DOE) and Princeton University have extended the contract under which Princeton University manages and operates the Princeton Plasma Physics Laboratory (PPPL). The laboratory is located on Princeton University's Forrestal Campus in Plainsboro, New Jersey. Under the new extension, the contract will be renewed for five years starting April 1, 2027. Princeton University expects to strengthen collaboration with faculty and research teams on campus during the contract period, explore next-generation fusion energy research facilities, and enhance laboratory infrastructure and safety to support ongoing operational needs. Princeton University's office for research affairs...
2026-08-25

Expansion Project Advances at Centrus Energy's Uranium Enrichment Facility in Piketon, Ohio
Centrus Energy said on August 24 that Ohio Governor Mike DeWine, Lieutenant Governor Jim Tressel, JobsOhio CEO J.P. Nauseef, along with state, federal, and local stakeholders, visited the company's uranium enrichment facility in Piketon, Ohio, to discuss the development of the U.S. domestic nuclear fuel supply chain and Ohio's role in it. In September 2025, Centrus Energy announced a multi-billion-dollar expansion of the Piketon uranium enrichment plant. Currently, the expansion...
2026-08-25

U.S. Plans to Launch Nuclear Fission-Powered Spacecraft to Fly by Mars by End of 2028
The National Aeronautics and Space Administration (NASA) is advancing the Space Reactor-1 "Freedom" (SR-1 Freedom) mission, with the goal of launching a nuclear fission-powered spacecraft by the end of 2028 to validate deep-space nuclear electric propulsion technology. According to existing mission documentation, the mission plans to fly by Mars in 2029 and deploy the SkyFall payload. The SR-1 Freedom is neither a fusion spacecraft nor a crewed Mars vehicle. Its core experiment is to operate a small uranium fission reactor, an energy conversion system, and Hall-effect thrusters in coordination beyond Earth orbit, accumulating engineering data for future higher-power deep-space missions...
2026-08-24

Japan's GX Promotion Organization Invests in Nuclear Fusion Startups
Japan's Green Transformation Promotion Organization (GX Promotion Organization) has invested in two startups, focusing on nuclear fusion-related technology and plastic recycling businesses respectively. The public funds invested are expected to be approximately 3 billion yen; when private sector funds are included, the total related investment is expected to reach approximately 20 billion yen. The two companies are Kyoto Fusioneering and JEPLAN. Among them, Kyoto Fusioneering is primarily engaged in the development of nuclear fusion engineering technology, while JEPLAN is involved in circular economy businesses such as plastic recycling. Details of the investment are expected to be officially announced by the relevant parties. This investment is seen as part of Japan's push to industrialize its green transformation.
2026-08-24

Italy's Eni Plans to Build Commercial Nuclear Fusion Power Plant in Europe by Early 2040s
Italian energy company Eni plans to build a commercial nuclear fusion power plant in Europe by the early 2040s or sooner. Francesca Ferrazza, head of Eni's magnetic confinement fusion project, stated that nuclear fusion technology has seen significant progress in recent years, and competition in the field is accelerating. Ferrazza said that nuclear fusion, which was previously confined mainly to the research stage, has now begun to meet the conditions for industrial application. She noted that Eni's goal is to promote the deployment of a commercial nuclear fusion power plant in Europe by the early 2040s, or even earlier. Eni has also shown interest in the extraction, purification, and recycling of spent fusion fuel back into reactors. Recently, Eni has...
2026-08-24

Naju City, Korea Proposes Construction of National Fusion Energy Center
Naju City, Korea recently proposed the concept of building a national-level fusion energy center, planning to use the locally planned artificial sun research facility as a foundation to connect the entire process of fusion energy from basic research, demonstration and validation, to power generation and industrialization. On August 21, Naju City Mayor Yoon Byung-tae visited the Korea Institute of Fusion Energy (KFE) and met with its President Oh Young-kuk. Yoon proposed that Naju City would strive to host the fusion demonstration reactor (DEMO) linked to the artificial sun research facility, while promoting the construction of a government-led comprehensive fusion energy research base and industrial cluster, and applying for the designation of a specialized fusion energy...
2026-08-22

Russia Plans to Build New Tokamak Device Using Reactor Technologies
Alexey Likhachev, Director General of Rosatom, recently stated at a nuclear energy development conference that Rosatom is collaborating with the Kurchatov National Research Centre to build a new tokamak device using reactor technologies. Likhachev said that fusion energy technology is one of the key directions for Russia's nuclear energy development. Currently, the European Union, the United States, the United Kingdom, and China are all advancing related projects, and technological competition in the field of controlled thermonuclear fusion continues to intensify. Russia hopes to use this project to maintain its technological leadership in this knowledge-intensive nuclear energy sector.
2026-08-21
Reading Ranking
- 1 Russia's Kurchatov Institute to Receive 5.7 Billion Rubles in Fiscal Budget Support: Focusing on Controlled Thermonuclear Fusion and Advanced Plasma Technology R&D
- 2 France's ITER research program may start before 2034
- 3 Israel's nT-TaO Signs Memorandum of Understanding with US-based Orion to Explore Deployment of Compact Fusion Systems for Data Center Power Supply
- 4 ITER Tritium Plant Completes Final Design, Fully Transitions to Equipment Manufacturing, Installation, and Commissioning
- 5 Expansion Project Advances at Centrus Energy's Uranium Enrichment Facility in Piketon, Ohio
- 6 Naju City, Korea Proposes Construction of National Fusion Energy Center
- 7 India's Private Fusion Tokamak PRAGYA Achieves Plasma Operation
- 8 Russia Plans to Build New Tokamak Device Using Reactor Technologies
- 9 Japan's GX Promotion Organization Invests in Nuclear Fusion Startups
- 10 Germany's BEST and Luvata Partner to Expand Supply of RRP Superconductors for Fusion
- 11 US and UK Join Forces to Accelerate Commercialization of Fusion Energy
- 12 US Fusion Company Commonwealth Fusion Systems Secures $1 Billion Investment from South Korea's Hyundai
- 13 ITER Tokamak Advances Assembly in France, Fusion Experiment Targets 150 Million Degree Celsius Plasma
- 14 U.S. Fusion Energy Company CFS Completes $1 Billion Equity Financing
- 15 South Korea's POSCO Group Invests in Japanese Fusion Company Kyoto Fusion Engineering