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Nuclear Energy Highlights

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Fusion

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Single-Channel Pulse Source of Electromagnetic-Driven Fusion Large Scientific Facility Passes Acceptance

Single-Channel Pulse Source of Electromagnetic-Driven Fusion Large Scientific Facility Passes Acceptance

2026-08-18

On August 16, the test and acceptance meeting for the single-channel pulse source of the comprehensive assessment experimental system of the electromagnetic-driven fusion large scientific facility, along with the inauguration ceremony of the Institute of Nuclear Fusion Science and Technology at Xi'an Jiaotong University, was held at the China Western Science and Technology Innovation Harbor. During the meeting, the single-channel pulse source of the comprehensive assessment experimental system passed testing and acceptance, and the Institute of Nuclear Fusion Science and Technology at Xi'an Jiaotong University was officially inaugurated. Before the meeting, attending experts and guests inspected the single-channel pulse source experimental system. During the acceptance session, the project team presented the overall status of the electromagnetic-driven fusion large scientific facility, the development progress of the single-channel pulse source, and the test verification results. The expert panel discussed the...

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Russia to Develop General Safety Rules for Controlled Thermonuclear Fusion Facilities

Russia to Develop General Safety Rules for Controlled Thermonuclear Fusion Facilities

2026-08-17

The Federal Environmental, Industrial and Nuclear Supervision Service of Russia (Rostekhnadzor) has completed the development of the draft federal norms and rules in the field of atomic energy use, "General Provisions for Ensuring the Safety of Controlled Thermonuclear Fusion Facilities," and has been soliciting comments and suggestions on the results of the draft review since August 17, 2026, with a feedback deadline of September 17, 2026. According to the draft, the document applies to controlled thermonuclear fusion facilities equipped with thermonuclear reactors or thermonuclear devices. The scope of application includes thermonuclear devices with a neutron production intensity exceeding 10²⁰ neutrons per second, or, in pulsed operation with a single pulse of less than 1 second, exceeding 10²⁰ neutrons per pulse, as well as...

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

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

2026-08-17

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.

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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

2026-08-17

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...

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

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

2026-08-17

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...

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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

2026-08-17

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.

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Nuclear Application

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Libya Plans to Restore Tajoura Research Reactor for Medical Isotope Production

The Libyan Atomic Energy Establishment recently proposed a plan to restore and restart the Tajoura nuclear research reactor for the production of medical radioisotopes. The establishment stated that this initiative aims to support the diagnosis and treatment of diseases and tumors, while reducing dependence on imports of relevant isotopes. Radioisotopes are essential materials in nuclear medicine, serving as tracers in medical imaging to help track organ function and detect certain diseases and tumors; some isotopes are also used in radiotherapy targeting specific tissues. According to the Libyan Atomic Energy Establishment, the Tajoura reactor has a rated thermal power of 10 megawatts and holds potential for producing various medical isotopes, including...

2026-08-18

Radioactive liquid waste leak suspected at QST's underground facility in Chiba due to record rainfall

According to Japanese media reports, due to record-breaking rainfall in Chiba Prefecture, an underground facility of the National Institutes for Quantum Science and Technology (QST) in Chiba City was flooded, and radioactive liquid waste in underground storage tanks at the facility may have mixed with rainwater and leaked outdoors. QST stated that as of the 13th, an estimated 2,000 to 3,000 liters of liquid waste had accumulated in the relevant underground storage tanks. After investigating water bodies around the tanks, the institute confirmed that detected radioactive material concentrations were below standard values, and no environmental impact has been indicated so far. QST reported the incident to national and local governments the following day and plans to submit preventive measures to the Nuclear Regulation Authority of Japan.

2026-08-18

CNNC Sichuan Environmental Protection Holds Cadre Meeting to Announce Comrade Zhang Xiangming's Appointment as Chief Accountant of the Company

On August 17, CNNC Sichuan Environmental Protection held a cadre meeting to announce the decision of the Group Company Party Leadership Group on the appointment of Comrade Zhang Xiangming as Chief Accountant of CNNC Sichuan Environmental Protection Engineering Co., Ltd. Wang Suohui, Secretary of the Party Committee and Chairman of CNNC Environmental Protection, attended the meeting via video and delivered a speech. Chang Yu, Secretary of the Party Committee and Chairman of the Company, presided over the meeting. On behalf of the Party Committee of CNNC Environmental Protection, Wang Suohui extended congratulations to Comrade Zhang Xiangming on his new appointment. He pointed out that this cadre adjustment was a decision made by the Group Company Party Leadership Group from the overall perspective of optimizing and strengthening the leadership team, fully reflecting the high importance attached to and earnest expectations for CNNC Sichuan Environmental Protection. At present, CNNC Sichuan Environmental Protection is at a critical stage of tackling tough challenges, with various tasks...

2026-08-18

SwissFEL Achieves Ultralow-Temperature X-ray Observation of Quantum States

Researchers at the Paul Scherrer Institute (PSI) in Switzerland recently reported that the Cristallina experimental station of the Swiss Free-Electron Laser (SwissFEL) can now observe quantum states that only emerge at extremely low temperatures using X-ray scattering at temperatures close to absolute zero. Simon Gerber (left) and Bill Pedrini (right) at the Cristallina experimental station of SwissFEL. With the help of a custom-built cryostat connected to the beamline (far left), quantum states can now be studied at extremely low temperatures. Paul Scherrer Institute PSI/Markus FischerAccording to the team, they recently achieved a low temperature of 35 millikelvin in experiments...

2026-08-17

Neutron and X-ray tomography reveal hydrogen-rich regions in Martian meteorite "Black Beauty"

An international team of researchers from Denmark, Sweden, and Switzerland recently conducted a three-dimensional non-destructive analysis of a slice of the Martian meteorite NWA 7034 "Black Beauty" using neutron tomography and X-ray tomography, discovering macroscopic hydrogen-rich regions within it. The study suggests that these hydrogen-rich features provide evidence of early water-rock interactions on Mars. The findings have been published in Geophysical Research Letters. Black Beauty is a brecciated meteorite from Mars that was ejected into space by an impact event and eventually landed in the Sahara Desert in Morocco. Weighing approximately 320 grams, the meteorite contains material up to 4.48 billion years old, making it one of the oldest known Martian crustal fragments...

2026-08-17

Fermilab Muon g-2 Experiment Sets New Direct Detection Limit on Muon Electric Dipole Moment

On August 12, 2026, the Muon g-2 Collaboration announced that a new analysis based on 25% of the data from the Muon g-2 experiment at the U.S. Department of Energy's Fermi National Accelerator Laboratory has produced the most sensitive direct measurement of the muon's electric dipole moment to date. The results show that if a muon electric dipole moment exists, its magnitude is below the current detection threshold of the experiment. The muon electric dipole moment values measured by Fermilab across different data-taking periods were compared with previous results from Brookhaven National Laboratory. The combined Fermilab value is consistent with zero (no observation). Although the experiment uses positive muons, results are typically reported for negative muons, which reverses the sign of the measured value...

2026-08-17