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Keyword:nuclear fusion

U.S. Fusion Company Discloses Texatron Platform Progress and Capital Markets Plans

U.S. Fusion Company Discloses Texatron Platform Progress and Capital Markets Plans

American Fusion disclosed to shareholders on August 14 the latest developments in the global fusion energy industry, data center electricity demand in Texas, and the company's capital markets arrangements. The company stated that its Texatron fusion engine under development remains in the testing and engineering validation phase, and whether it can be used for commercial power supply in the future depends on multiple conditions, including test plans, regulatory approvals, financing, scaled production, and commercialization progress. American Fusion stated that its long-term goal is to develop the Texatron platform into a scalable distributed power source and explore supplying electricity to data centers, hospitals, defense facilities, industrial facilities, and other customers through a power-as-a-service model.

2026-08-17

US experiment reveals diamond melting behavior under high pressure, potentially advancing inertial confinement fusion research

US experiment reveals diamond melting behavior under high pressure, potentially advancing inertial confinement fusion research

Researchers at Lawrence Livermore National Laboratory published a new study in Nature Physics documenting the melting process of diamond at pressures approximately three times greater than those at Earth's core. The experiments showed that under high-pressure conditions, diamond floats in liquid metallic carbon, similar to how ice floats in water. This finding helps improve inertial confinement fusion experimental models and provides new evidence for understanding the potential "diamond rain" phenomenon inside ice giant planets such as Neptune and Uranus. The latest melting experiments confirmed that under high pressure, diamond floats in liquid metallic carbon, just as ice floats in a glass of water. (Concept image: James Wickboldt/LLNL) The research team stated...

2026-08-17

Machine learning framework predicts micro-displacements of DIII-D fusion device coils

Machine learning framework predicts micro-displacements of DIII-D fusion device coils

Researchers at the U.S. Department of Energy's (DOE) Thomas Jefferson National Accelerator Facility (Jefferson Lab) and collaborating teams have developed a machine learning framework that can predict subtle changes in critical fusion device hardware before the next experiment begins. The method targets the DIII-D National Fusion Facility in San Diego, and the findings have been published in the journal Machine Learning with Applications. Interior of the DIII-D National Fusion Facility tokamak. (Image courtesy of General Atomics) DIII-D is a tokam...

2026-08-17

Controlled Nuclear Fusion Specialized Power Supply Industry Matchmaking Conference Held in Hefei High-tech Zone

Controlled Nuclear Fusion Specialized Power Supply Industry Matchmaking Conference Held in Hefei High-tech Zone

On August 14, a major industry event focused on the fusion core equipment track — the "Fusion Power Source, Chain Linkage, New Journey" Controlled Nuclear Fusion Specialized Power Supply Industry Matchmaking Conference — was held at the Zhongke Hefei Technology Innovation Engineering Institute. The conference was guided by the Hefei High-tech Zone Science and Technology Bureau, co-hosted by the USTC Silicon Valley Service Platform and the Fusion Financial Institutions Alliance, organized by Hefei Tai'a Fusion Technology Co., Ltd., Science Island Hefei Technology Innovation Engineering Institute Co., Ltd., and the Anhui Science, Technology and Industry Integration Innovation Association, with exclusive support from the Bank of China Hefei Branch. Specialized power supplies are the core power hub supporting the stable operation of controlled fusion devices, and are also key hardware for achieving stable plasma confinement and advancing self-sustaining fusion reactions. In various fusion experimental devices, the overall cost of the power supply system accounts for a considerable proportion. Currently, the global controlled nuclear fusion industry has entered a stage where engineering demonstration and commercialization breakthroughs proceed in parallel, and the industry is facing a window of opportunity for development. However, the industry still faces practical development challenges such as long cycles for translating scientific research into technology applications, lack of information exchange between upstream and downstream supply and demand, and heavy R&D burdens on sci-tech innovation and manufacturing enterprises.

2026-08-17

SLAC team observes progressive melting of copper under extreme heat in real time

SLAC team observes progressive melting of copper under extreme heat in real time

Researchers at the SLAC National Accelerator Laboratory, under the U.S. Department of Energy, and their collaborators used the Mega-electron-volt Ultrafast Electron Diffraction (MeV-UED) facility to observe in real time the melting process of copper atoms under extreme temperatures. The study was published in Nature Communications. Future fusion power plants will need to replicate fusion reactions that occur inside stars here on Earth. The core plasma can reach temperatures of hundreds of millions of degrees Celsius, while surrounding structural materials must withstand sudden, intense thermal shocks. Copper and its alloys, owing to their excellent thermal conductivity, are considered capable of serving as "heat sinks" in fusion systems...

2026-08-15

Chinese Team Achieves Full Technical Chain Integration in Wall Treatment for the World's Largest "Artificial Sun"

Chinese Team Achieves Full Technical Chain Integration in Wall Treatment for the World's Largest "Artificial Sun"

Recently, the team from the Southwestern Institute of Physics under the China National Nuclear Corporation (CNNC) has made significant progress in the wall treatment technology of the International Thermonuclear Experimental Reactor (ITER): not only successfully passing the Delta Final Design Review (Delta FDR) for the supplementary design of the Glow Discharge Cleaning (GDC) system permanent electrode project, but also, leading and jointly with CNI23, winning the bid and signing contracts in France for the design and manufacture of the boronization system and the X-ray Crystal Spectrometer (XRCS) gas supply system. This marks a new expansion of the Chinese team's core technology in ITER wall treatment, extending the scope from the original glow discharge cleaning to boronization wall treatment, achieving a full technical chain from impurity removal to surface pre-treatment...

2026-08-15

The Energy Research Institute of Hefei Comprehensive National Science Center Achieves a Series of New Progress in Safety Assessment of Activated Corrosion Products under Magnetic Field Environments in Fusion Reactors

The Energy Research Institute of Hefei Comprehensive National Science Center Achieves a Series of New Progress in Safety Assessment of Activated Corrosion Products under Magnetic Field Environments in Fusion Reactors

Recently, the Radiation Protection and Safety Research Center of the Energy Research Institute of Hefei Comprehensive National Science Center has made a series of significant progress in the field of safety assessment of activated corrosion products under magnetic field environments in fusion reactors. The research team conducted systematic studies on the corrosion behavior of China's low-activation ferritic/martensitic steel CLF-1 in magnetic field environments, from three dimensions: water corrosion characteristics, migration patterns of corrosion products, and the influence of surface roughness. The relevant results have been published as three papers in the journal *Nuclear Materials and Energy*, which is ranked in Zone 1 of the emerging journal classification table. This series of research outcomes provides key scientific evidence for the radiological safety assessment of cooling water systems in fusion reactors...

2026-08-15

ITER Tokamak Advances Assembly in France, Fusion Experiment Targets 150 Million Degree Celsius Plasma

ITER Tokamak Advances Assembly in France, Fusion Experiment Targets 150 Million Degree Celsius Plasma

The ITER tokamak being assembled in southern France is one of the most closely watched large-scale experimental devices in global nuclear fusion research. The machine weighs approximately 23,000 tonnes in total and adopts a donut-shaped toroidal structure, using strong magnetic fields to confine high-temperature plasma, with the goal of replicating on Earth the conditions for fusion reactions that occur inside stars. Its plasma volume is approximately 830 cubic meters, far exceeding previous tokamak devices, and it is therefore expected to validate the key physics and engineering technologies required for future commercial fusion reactors. ITER adopts the toroidal tokamak structure because charged particles can move along toroidal paths under strong magnetic fields, thereby minimizing direct contact with the device's inner walls...

2026-08-14

Marvel Fusion, Colorado, and Siemens Energy Sign Letter of Intent to Advance Laser-Driven Fusion Energy Cooperation

Marvel Fusion, Colorado, and Siemens Energy Sign Letter of Intent to Advance Laser-Driven Fusion Energy Cooperation

Marvel Fusion, the U.S. State of Colorado, and Siemens Energy announced on August 12 the signing of a Letter of Intent aimed at strengthening transatlantic cooperation to advance the research, development, and commercialization of laser-driven fusion energy technology. Under the Letter of Intent, the tripartite cooperation will focus on four areas: advancing joint research and development projects, including work utilizing leading fusion research facilities; strengthening the ecosystem connection between the RISE center in Colorado and the VEGA center in Bavaria; promoting transatlantic fusion energy industry and supply chain partnerships; and conducting talent development cooperation. The parties will also establish a joint working group to identify priority projects and plan to organize delegation visits, expert workshops, and initial cooperative activities within the next 12 months.

2026-08-13

Dong Baotong, Director of the National Nuclear Safety Administration: China's nuclear safety level remains among the top internationally, and during the "15th Five-Year Plan" period, the number of operating nuclear power units in China will rank first in the world

Dong Baotong, Director of the National Nuclear Safety Administration: China's nuclear safety level remains among the top internationally, and during the "15th Five-Year Plan" period, the number of operating nuclear power units in China will rank first in the world

The State Council Information Office held a series of press conferences on August 13 themed "Starting the '15th Five-Year Plan' with a Strong Beginning," introducing the progress of comprehensively advancing the construction of a Beautiful China. Dong Baotong, Vice Minister of Ecology and Environment and Director of the National Nuclear Safety Administration, stated at the conference that ecological environment safety encompasses several key aspects, including ecological security, nuclear safety, and environmental risk prevention and control. The Ministry of Ecology and Environment serves as the lead coordinating body for both the national ecological security work coordination mechanism and the nuclear safety work coordination mechanism. Over the years, together with relevant departments, we have actively responded to various risks and challenges, effectively safeguarding the bottom line of ecological environment safety. Among these, in the area of nuclear safety, we have consolidated the primary responsibility of nuclear facility operators...

2026-08-13

Major Fusion Energy Appointment in the UK: MIT Professor Dennis Whyte Named CEO of UKAEA

Major Fusion Energy Appointment in the UK: MIT Professor Dennis Whyte Named CEO of UKAEA

The UK Atomic Energy Authority (UKAEA) has appointed Professor Dennis Whyte, a fusion energy expert from the Massachusetts Institute of Technology, as its new Chief Executive Officer, with his tenure officially commencing in autumn 2026. This appointment comes at a critical stage in the UK's accelerated push toward fusion energy commercialisation, signalling the country's intent to strengthen its position in the global fusion energy race by attracting international talent with combined expertise in research, engineering, and industrialisation. The UK government previously announced an investment of £2.5 billion in fusion energy research, development, and innovation over the five-year period ending in 2030. Upon taking office, Whyte will be tasked with advancing the R&D system, accelerating technology commercialisation, expanding industrial and international collaboration, and translating scientific...

2026-08-13

Jingye Intelligent Increases Capital to Take Controlling Stake in Hefei Zhenggeng, Extending into High-End Equipment Materials for Nuclear Fusion

Jingye Intelligent Increases Capital to Take Controlling Stake in Hefei Zhenggeng, Extending into High-End Equipment Materials for Nuclear Fusion

Jingye Intelligent recently disclosed that it has completed a capital increase to take a controlling stake in Hefei Zhenggeng Technology Co., Ltd. (hereinafter referred to as "Hefei Zhenggeng"). On August 8, Jingye Intelligent, Hefei Zhenggeng, and the Chaohu Municipal People's Government signed a strategic cooperation framework agreement, under which the three parties will cooperate on high-end equipment industry chain synergy, technological innovation, and industrial project implementation. Public information shows that Hefei Zhenggeng focuses on high-performance alloy materials and precision components, with main products including nickel-based alloy parts for high-temperature and new energy equipment, special materials and components for nuclear power and nuclear fusion equipment, as well as precision cobalt-chromium-molybdenum alloy products, with applications covering high-end nuclear industry equipment, energy industry, and healthcare. ...

2026-08-13

South Korea Sets 2035 Commercialization Target for Small Modular Reactors

South Korea Sets 2035 Commercialization Target for Small Modular Reactors

The Ministry of Science and ICT (MSIT) of South Korea announced on August 12 its "Seven Future Growth Engines SEED" promotion plan, designating small modular reactors, nuclear fusion, and next-generation renewable energy as key focus areas for the future clean energy sector. Among these, nuclear power-related content primarily centers on the commercialization of small modular reactors, research and development of non-light water reactor-type reactors, nuclear fuel supply security, and fusion demonstration power generation. According to the plan, South Korea will advance the development of light water reactor-type small modular reactors, targeting commercialization in Gijang County, Busan by 2035. The innovative small modular reactor (i-SMR) will undergo detailed design through public-private cooperation starting next year...

2026-08-13

Fusion for Energy completes full delivery of ITER cryopump distribution system

Fusion for Energy completes full delivery of ITER cryopump distribution system

The International Thermonuclear Experimental Reactor (ITER) will operate in an ultra-high vacuum environment. To prevent contamination inside the device, a set of cryopumps supplied by Europe will extract gas particles and alternate operation before and after plasma discharges, maintaining the vacuum vessel pressure at approximately one millionth of Earth's atmospheric pressure. The core of cryopump operation lies in the extremely low-temperature environment. Its internal panels will be cooled to 4 K, approximately minus 269 degrees Celsius, close to absolute zero, to capture gas particles; they are then warmed to release and expel the particles. To precisely control this process, Europe is also supplying ITER with the Front-End Cryopump Distribution System (FECDS), which delivers helium at specific doses and temperatures to the cryopumps...

2026-08-12

Fuse Energy Technologies Corp. Reports FAETON-X Single-Shot D-D Fusion Neutron Yield of 1.27×10¹²

Fuse Energy Technologies Corp. Reports FAETON-X Single-Shot D-D Fusion Neutron Yield of 1.27×10¹²

Fuse Energy Technologies Corp., headquartered in California, USA, announced on August 11 that its megajoule-class dense plasma focus device FAETON-X measured a peak neutron yield of (1.27±0.27)×10¹² neutrons per shot in a single D-D fusion experiment. The company stated that this is one of the highest single-shot fusion neutron yields publicly recorded by a commercial fusion enterprise, and the first to reach the 10¹² order of magnitude. FAETON-X is a megajoule-class pulsed-power fusion system developed by Fuse, designed as a single-pulse flash neutron source, serving pulsed-power fusion R&D and...

2026-08-12