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Global nuclear power generation hits record high in 2025, with net growth mainly driven by China
According to the latest release of the Statistical Review of World Energy, global nuclear power generation reached 2,845 TWh in 2025, an increase of approximately 30 TWh from 2024, up 1.3% year-on-year, setting a new record. Among this, China's nuclear power generation increased by more than 34 TWh, becoming the primary source of net global nuclear growth. This record needs to be viewed within a longer timeframe. The previous peak in global nuclear power generation occurred in 2006, when it reached 2,803 TWh. In other words, although 2025 global nuclear power generation has surpassed the previous peak, the cumulative increase over 19 years is only about 1.5%, which does not indicate rapid expansion on a global scale. Over the past decade, global nuclear power generation has risen from 2015...
2026-08-03

Uzbekistan Updates Licensing Rules for Nuclear Energy and Ionizing Radiation Sources
2026-08-03

Annual maintenance of Finland's Loviisa nuclear power plant begins today, running from August 2 to October 18
2026-08-03

Serbia Launches Nuclear Program: Experts to Train in France for 17 Months, First Nuclear Power Plant Expected by 2040
2026-08-03

Behind India's Nuclear Power Expansion: Where Does Radioactive Waste Go? Government Details Management Process in Parliament for First Time
2026-08-03

India's First Draft Rules for SHANTI Nuclear Energy Act Prepared, in Consultation with Ministries and Industry
2026-08-03

Rosatom Expects Revenue of $43.2 Billion in 2026
2026-08-03

Dutch ULC-Energy and US McDermott sign cooperation agreement to advance Rolls-Royce SMR deployment in the Netherlands
2026-08-03

Argentine President Javier Milei Appoints Former Bariloche Mayor Gennuso as Vice President of the Atomic Energy Commission
2026-08-03

Türkiye will participate in the International Nuclear Science Olympiad (INSO-2026) as a competing country for the first time. The competition is scheduled to take place from August 2 to 9 in Jeddah, a city on the Red Sea coast of Saudi Arabia. According to Türkiye's Ministry of Energy and Natural Resources, the high school students representing Türkiye have completed their final preparations in the capital Ankara. The participating students come from Istanbul Private Bahçeşehir Science High School, who were selected through a nationwide competition, standing out from 30 schools to earn the right to represent Türkiye. During the preparation period, students received training in atomic structure, atomic nucleus, radiation, fission, fusion, environmental radioactivity, radiation risks and safety, as well as nuclear energy and...
2026-08-03
Recently, the research team at the Institute of Modern Physics, Chinese Academy of Sciences, has made new progress in quantum computing studies of first-principles nuclear structure for multi-fermion systems. The team developed a universal quantum-classical hybrid computing framework capable of calculating Green's functions and spectral functions of nuclear many-body systems. The relevant results were published as a Letter in Physical Review C. First-principles Hamiltonian many-body calculations are a core approach for revealing the laws of strongly correlated quantum systems, widely applied in fields such as quantum chemistry and nuclear physics. However, the Hilbert space of such problems grows exponentially with particle number, posing insurmountable computational resource challenges on classical computers...
2026-08-03
Water-based nanofluidic ionic devices offer unique advantages in frontier fields such as brain-computer interfaces and biocompatible computing. Recently, the research team from the State Key Laboratory of Heavy Ion Science and Technology at the Institute of Modern Physics, Chinese Academy of Sciences, in collaboration with Lanzhou University, Hebei University of Geosciences, and other partners, successfully achieved stable ionic memristive effects in single-ion-track nanochannels. Through precise regulation, they realized programmable transitions in memristive and synaptic functions, providing a new technological pathway for the development of next-generation low-power neuromorphic computing hardware. The related results were published in the journal *Small* on July 22. Leveraging the Heavy Ion Research Facility in Lanzhou (HIRFL), the researchers...
2026-08-03
Recently, the research team from the Institute of Modern Physics (IMP) of the Chinese Academy of Sciences, together with collaborators, successfully produced and identified the rare isotope hafnium-153 using the High-Intensity Heavy-Ion Accelerator Facility (HIAF). This is the first physics result obtained during the commissioning of HIAF, demonstrating that China's new-generation high-intensity heavy-ion research facility is capable of exploring unknown nuclides and expanding the nuclear chart. It marks the official commencement of HIAF's scientific discovery journey. The result was published as a short communication in *Science Bulletin*. Figure: Position of hafnium-153 on the nuclear chart; the blue line indicates the boundary of known nuclides. Image | Hu Houyu, Li Hongfu. Atomic nuclei are composed of protons and neutrons, and different combinations of proton and neutron numbers form the diverse world of nuclides. Exploring unknown nuclides and investigating the boundaries of nuclear existence are important frontiers in nuclear physics. Hafnium-153 is located in the neutron-deficient heavy-mass region and is an important subject for studying the evolution of nuclear structure and the limits of nuclear stability. It had not been reported prior to this experiment. The discovery and precise measurement of this nuclide will help test nuclear theory models and deepen our understanding of nuclear structure regularities.
2026-08-03
Within the Southeast Atomic Energy Medical Institute (Southeast Atomic Energy Medical Institute) in Gijang-gun, Busan, the proton therapy center and heavy ion therapy center projects are being advanced simultaneously, expected to form an integrated cancer treatment hub, alleviate medical concentration in the capital region, and attract patients from other regions and overseas. Busan's first proton accelerator project can also be used for industrial purposes, benefiting regional high-tech industries and investment attraction. According to Busan City and the Busan Institute of Science and Technology Advancement (BISTEP) on August 2, the Southeast Proton Therapy Center construction project will officially break ground in the second half of this year; BISTEP recently completed a commissioned study on the establishment strategy and implementation plan for the Southeast Proton Therapy Center (executed by the Southeast Atomic Energy Medical Institute) (Southeast...
2026-08-03
On July 25, 2026, the fourth "1+1" Youth Forum on Nuclear and Particle Physics (hereinafter referred to as the "1+1 Forum") was successfully held at the Institute of High Energy Physics of the Chinese Academy of Sciences (hereinafter referred to as IHEP). Themed "Frontier Technologies Empowering Nuclear Medicine Diagnosis and Treatment," the forum was organized by the Youth Working Committee of the Beijing Nuclear Society and the IHEP Group of the Youth Innovation Promotion Association of the Chinese Academy of Sciences, co-organized by the Institute of High Energy Physics of the Chinese Academy of Sciences and the School of Nuclear Science and Technology of the University of Chinese Academy of Sciences, and hosted by the R&D Center for Nuclear Technology (Nuclear Detection and Nuclear Imaging) of the China Atomic Energy Authority and the Beijing Engineering Research Center for Radiation Imaging Technology and Equipment. The 1+1 Forum has always adhered to the principle of organically combining demand with technology, academia with science popularization...
2026-08-03
On July 30, 2026, Kobe University and the Japan Atomic Energy Agency announced that a research team led by Professor Hideki Higashibata of the Graduate School of Science at Kobe University, along with Shoko Minami, who was a master's student at the time of the research, in collaboration with Yoshinori Haga, Research Director at the Japan Atomic Energy Agency, and researchers from Osaka University, experimentally confirmed for the first time the existence of a spin-triplet superconducting state with full-gap characteristics in the intermetallic compound UBe13. The findings were published in the Journal of the Physical Society of Japan on June 26 and were selected as an Editor's Choice paper. Since its discovery in 1983, UBe13 has been regarded as an important candidate material for spin-triplet superconductivity. Unlike conventional spin-singlet superconductivity...
2026-08-03