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Keyword:MU
MIT Develops Ultrafast X-ray Thermometry Method to Observe Heat Transfer in Multilayer Chip Structures
Researchers at the Massachusetts Institute of Technology (MIT) have developed a new method for observing how heat transfers through multilayer materials, which can be used to precisely measure heat flow variations inside electronic devices such as computer chips. The findings have been published in Nature Communications. As computer chips continue to shrink in size and power density keeps rising, device overheating has become a major factor limiting performance improvements. Traditional heat flow measurement methods face limitations when dealing with the multilayer structures of real electronic devices—for example, the commonly used time-domain thermoreflectance method struggles to distinguish heat transport in different material layers, while infrared imaging and other approaches also fail to capture rapid changes at microscopic scales. To address this issue...
2026-08-06
World Nuclear Association: Global Nuclear Power Investment Must Reach $250 Billion Annually to Support Tripling of Installed Capacity by 2050
Global nuclear power investment is expected to see significant growth, with annual investment needs potentially exceeding $250 billion by 2050 to meet rising world energy demand. According to a report by the World Nuclear Association (WNA), this investment scale aims to at least triple global nuclear power installed capacity and is supported by 38 countries. This represents a potential investment opportunity of up to $6 trillion for the nuclear power industry, attracting widespread attention. In addition to government funding, private sector capital participation is crucial to the comprehensive development of nuclear power. The report emphasizes that investment should not only focus on new nuclear power plant construction but also expand the nuclear fuel cycle to support large-scale operations, ensure energy supply...
2026-08-06
Quantum X Labs Advances Quantum Computing for Nuclear Particle Transport Predictive Simulations
Quantum X Labs Inc. recently announced that its subsidiary, Nuclear Quantum, has proposed a new solution to a bottleneck in computational simulations for the nuclear industry, attempting to introduce quantum computing into nuclear particle transport prediction to support compute-intensive scenarios such as nuclear medicine system design. According to reports, traditional particle transport simulations play an important role in nuclear medicine system design, but they often require substantial computational resources and involve long runtimes, impacting R&D and optimization efficiency. The technology proposed by Nuclear Quantum aims to transform physical transport models into quantum circuits, enabling particle propagation and random walk dynamics to be directly represented and simulated within a quantum computing framework...
2026-08-06
First American Nuclear Company (FANCO) Receives DOE Funding to Accelerate Advanced Nuclear Reactor Development
First American Nuclear Company (FANCO) has received two Rapid Turnaround Experiment (RTE) awards from the U.S. Department of Energy's Office of Nuclear Energy, enabling the company to leverage specialized national laboratory research capabilities to support the development of its EAGL-1 small modular reactor. These awards were granted during the FY2026 RTE selection cycle, which evaluates proposals based on technical superiority, feasibility, and relevance to DOE's nuclear energy programs. The program provides researchers with free access to radiation testing, post-irradiation examination facilities, and technical expertise. FANCO-approved research projects include a study on the effects of extrusion temperature on FeCrAl-ODS alloys in liquid metal fast...
2026-08-06
Han Bing, Chairman of Hefei Municipal CPPCC, Leads Delegation to CYC Ion for Research and Guidance
On the afternoon of August 4, Han Bing, Chairman of Hefei Municipal Committee of the Chinese People's Political Consultative Conference (CPPCC), led a delegation to CYC Ion for research and guidance, and held a symposium. Yong Fengshan, Deputy Director of the Standing Committee of the Municipal People's Congress; Su Xiang, Secretary-General of the Municipal CPPCC; Jiang Xin, Chairman of the Municipal Industrial Investment Group; Zhang Xiaofeng, Director of the Education, Science, Health and Sports Committee of the Municipal CPPCC; and Guo Mei, Deputy Director of the Municipal Bureau of Industry and Information Technology, participated in the event. Song Yuntao, Deputy Director of the Hefei Institutes of Physical Science, Chinese Academy of Sciences; Liu Lu, Chairman of CYC Ion; Chen Yonghua, General Manager; and Deputy General Managers Ding Kaizhong, Li Jun, and Guang Ruohuai accompanied the delegation. The delegation was briefed in detail on CYC Ion's industrial layout and business operations, with discussions focusing on key technological breakthroughs in nuclear medicine and high-end equipment, technology transfer and commercialization, and industrial development.
2026-08-06
CNNC & CIR Co-sponsors Regional Nuclear Medicine Department Development Training Program (Ganzhou Session) and Ganzhou Cancer Hospital High-Quality Nuclear Medicine Diagnosis and Treatment Project Launched Simultaneously
Recently, the Regional Nuclear Medicine Department Development Training Program (Ganzhou Session) and the Ganzhou Cancer Hospital High-Quality Nuclear Medicine Diagnosis and Treatment Project were launched simultaneously at Ganzhou Cancer Hospital. An expert panel from the Nuclear Medicine Branch of the Chinese Medical Association, along with representatives from CNNC & CIR and Atom High-Tech, visited the hospital for research and exchange. More than 200 medical staff from medical institutions at various levels across Jiangxi Province attended the event. The launch ceremony was moderated by Yang Chuansheng, Director of the Nuclear Medicine Department at Ganzhou Cancer Hospital. Fu Wei, Deputy Director of the Ganzhou Municipal Health Commission; Wang Jing, Chair of the Nuclear Medicine Branch of the Chinese Medical Association; and Huang Xingwei, Party Secretary of Ganzhou Cancer Hospital, attended and delivered speeches. Wang Jing stated that nuclear medicine plays a vital supporting role in the precise diagnosis and treatment of major diseases such as cancer, and that promoting the standardized development of regional nuclear medicine at the city and county levels is conducive to channeling high-quality medical resources to the grassroots and enhancing primary healthcare service capabilities.
2026-08-06
UC Santa Barbara and Lawrence Livermore National Laboratory Collaborate to Accelerate Fusion Plasma Simulations with AI
The University of California, Santa Barbara (UCSB) and Lawrence Livermore National Laboratory (LLNL) are launching a new collaboration to bring artificial intelligence into extreme plasma simulations, accelerating critical computations in nuclear fusion and high-energy-density physics research. Neel Sankaran (left), a doctoral student of UCSB Professor Haewon Jeong, poses with LLNL scientist Min Sang Cho (right). The project is led by the Department of Electrical and Computer Engineering at UC Santa Barbara...
2026-08-05
India's cumulative nuclear power generation surpasses 1 trillion units (1000 BU), NPCIL sets historic milestone
Nuclear Power Corporation of India Limited (NPCIL) announced on August 4 that cumulative nuclear power generation since the start of commercial operations has exceeded 100 billion kilowatt-hours (1000 Billion Units, equivalent to 1 trillion kWh) for the first time. The company stated that this milestone marks a significant achievement on India's path toward clean and sustainable energy, corresponding to avoiding approximately 860 million tonnes of CO₂ emissions—equivalent to approximately taking 187 million gasoline and diesel passenger vehicles off the road for a full year, or nearly the total annual greenhouse gas emissions of a single industrialized nation such as Germany or Japan. NPCIL data shows that electricity generated through nuclear power has effectively avoided substantial greenhouse gas emissions. Nuclear energy is recognized as one of the low-carbon and reliable energy sources, playing a critical role in addressing climate change...
2026-08-05
Kalinin NPP Reaches 850 Billion kWh of Cumulative Power Generation
On August 4, Russia's Kalinin NPP reported that since the commissioning of its first unit, the plant has generated a cumulative total of 850 billion kWh of low-carbon electricity. This output is equivalent to approximately 3.5 years of electricity demand in Russia's Central Federal District. Kalinin NPP is part of the power division of Rosatom. Viktor Ignatov, the plant's director, stated that the cumulative generation of 850 billion kWh is the result of the long-term dedication and professional commitment of several generations of nuclear workers, built upon the expertise of the operating team, reliable unit performance, and the consistent prioritization of safety...
2026-08-05
Approximately 13,000 liters of water found in Unit 3 of Hamaoka Nuclear Power Plant; Chubu Electric continues investigation into data falsification
Japan's Chubu Electric Power announced on August 4 that water accumulation totaling approximately 13,000 liters was found in the turbine building and related areas of Unit 3 at the Hamaoka Nuclear Power Plant. The company stated that the accumulated water contains no radioactive substances and is currently investigating the specific cause. According to Chubu Electric Power, at around 11:00 a.m. on the 4th, a worker from a partner company discovered approximately 5 liters of water in a passageway on the northwest side of the first basement floor of the turbine building adjacent to the reactor building of Unit 3. Subsequently, company personnel continued on-site inspections and confirmed at around 3:00 p.m. the same day that approximately 13,000...
2026-08-05
Smolensk NPP Successfully Conducts Emergency Drill Multi-Agency Coordination Tests Response Capabilities
On August 3, the Smolensk Nuclear Power Plant successfully conducted an accident response drill, with the participation of the Nuclear Power Plant Emergency Assistance Team (OPAS) of Rosenergoatom and emergency service departments. The drill brought together nuclear power plant staff, the crisis center team of Rosatom, local fire departments, medical institutions, and government representatives from the city of Smolensk and the Yelnya district. During the drill, all parties focused on practicing key tasks such as the alert and preparation of emergency response forces under non-routine conditions, organizing protective measures for personnel and local residents, and monitoring unit status and safety levels. The drill also included simulated fire...
2026-08-04
Researchers at the Institute of Modern Physics, Chinese Academy of Sciences, reveal the dual-directional role of shell effects in multinucleon transfer reactions
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, together with collaborators, revealed the dual-directional mechanism of shell effects in multinucleon transfer reactions and proposed optimized reaction systems. This study provides new insights for the efficient synthesis of neutron-rich nuclides in the laboratory. The results were published in Physics Letters B. The synthesis and study of neutron-rich nuclides near the neutron magic number 126 are of special scientific significance, as the properties of these nuclides are directly related to how heavy elements such as gold and platinum in the universe are formed. However, efficiently producing these nuclides has long been an experimental challenge. Traditional fusion-evaporation...
2026-08-04
Busan Gijang Southeast Radiation Medical Science Industrial Complex Simultaneously Advances Proton and Heavy Ion Therapy Centers
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
After 25 Years, the Muon Wobble Puzzle Sees Key New Progress in Physics
For 25 years, precise measurements of how muons wobble in a magnetic field have been a major puzzle in particle physics. Early experiments showed a discrepancy between the measured value of the muon's g-factor and theoretical predictions, a difference once seen as a possible hint of unknown particles. Recent new theoretical calculations and experimental analyses have brought a new twist to this puzzle. The muon is a heavier cousin of the electron that precesses like a tiny magnet in a magnetic field. Its extra wobble is quantified by the muon g-2 coefficient. According to quantum theory, known particles and interactions influence this coefficient through fleeting quantum fluctuations, making muon g-2 a key test of the Standard Model...
2026-08-03
Multinational Team Reveals Mechanisms of Lithiation in Modulating the Structural and Electronic Properties of Borophene Using Synchrotron Techniques
A research team from the Institute of Physics in Zagreb, Croatia, Elettra Synchrotron in Trieste, Italy, Shimane University, and Tokyo University of Science recently conducted a study on the interaction between lithium atoms and borophene, revealing the mechanisms by which lithiation affects the atomic structure and electronic properties of borophene. The findings were published in *ACS Nano* and selected as the journal cover article. (a) Shift of the B 1s core level toward higher binding energy; (b) reduction of the sample work function due to charge transfer from Li atoms to B atoms; (c) lithium atoms (yellow) deposited on borophene (magenta) induce deformation of the borophene lattice, attributed to significant charge redistribution within the system...
2026-08-03