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Nuclear Energy Highlights

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Fusion

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Korea's Naju Artificial Sun Research Facility Expected to Receive Preliminary Feasibility Study Results in September

Korea's Naju Artificial Sun Research Facility Expected to Receive Preliminary Feasibility Study Results in September

2026-08-11

The project to build the Naju Artificial Sun research facility in Korea is expected to receive the results of the national preliminary feasibility study in September. With a total investment of approximately 1.2 trillion KRW, the project plans to construct large-scale nuclear fusion research and demonstration infrastructure in Wangok-myeon, Naju City, South Jeolla Province, and is regarded by local governments as a key pillar in the future industrial layout of the South Jeolla–Gwangju Integrated Special Zone. The Ministry of Science and ICT (MSIT) designated the "Nuclear Fusion Core Technology Development and Strategic Infrastructure Construction Project" as a national R&D project and included it in the preliminary feasibility study on January 30. According to the previous schedule, the evaluation period was approximately seven months. The results were originally expected to be announced in August, but...

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Russian Scientists Propose Fast Calculation Method to Simulate Plasma Ion Parameters in Seconds

Russian Scientists Propose Fast Calculation Method to Simulate Plasma Ion Parameters in Seconds

2026-08-11

Researchers from the HSE University and the Moscow Institute of Physics and Technology (MIPT) have developed an analytical method for calculating the behavior of heavy ions in helium under strong electric fields, which can accelerate the computation of ion mobility and ion–molecule reaction rates by thousands of times. The findings have been published in Physica Scripta. Plasma, composed of charged particles such as electrons, negative ions, and positive ions, is typically quasi-neutral and highly conductive. It exists not only in fluorescent lamps and welding arcs but is also used in controlled nuclear fusion devices such as tokamaks. Atmospheric plasma jets can also be applied to wound disinfection, work surface cleaning...

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Kyoto Fusioneering to Relocate U.S. Headquarters to Oak Ridge

Kyoto Fusioneering to Relocate U.S. Headquarters to Oak Ridge

2026-08-11

Kyoto Fusioneering (KF) will relocate its U.S. headquarters to Oak Ridge, Tennessee, investing $46.9 million in Anderson County and creating 51 new jobs. The project will build critical fusion testing infrastructure, with a focus on supporting the development of the fusion nuclear testing facility UNITY-3. UNITY-3 is planned to be built at Oak Ridge National Laboratory (ORNL) through a public-private partnership. The facility has received support from the U.S. Department of Energy (DOE) and has been listed as a national priority in its final "Fusion Science and Technology Roadmap." According to the plan, UNITY-3 will employ a deuterium-tritium (D-T) fusion neutron source to validate tritium breeding capabilities and related performance under conditions approaching a real fusion nuclear environment...

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TMTG Advances $6 Billion-Plus Merger with TAE, Pivoting to Commercial Fusion Energy

TMTG Advances $6 Billion-Plus Merger with TAE, Pivoting to Commercial Fusion Energy

2026-08-11

Trump Media & Technology Group (TMTG) recently disclosed that it will proceed with its merger plan with fusion energy firm TAE Technologies (TAE), despite reporting significant losses in the second quarter. The deal is valued at over $6 billion, with TMTG committing to invest $300 million in TAE before the transaction closes. According to company disclosures, TMTG recorded a loss of $238 million in the second quarter of 2026, with revenue of $1.7 million and total assets approaching $2 billion. In the first half of 2026, the company's net loss widened to $644 million, compared to a loss of $52 million in the same period last year. The company attributed the widening losses primarily to...

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Shenju Nuclear Energy Unveils

Shenju Nuclear Energy Unveils "Jinwu-1" Spherical Torus Fusion-Fission Hybrid Reactor Design

2026-08-11

Shenju (Sichuan) Nuclear Energy Co., Ltd. has unveiled the first-generation device, the Jinwu-1 design, which adopts the spherical torus fusion-fission hybrid reactor technology pathway, driving a subcritical nuclear energy system with a compact fusion neutron source to achieve functions such as energy amplification, fuel breeding, and transmutation of long-lived nuclides. According to the design, Jinwu-1 uses a 50 MW-class fusion power as the conceptual design baseline, employing high-temperature superconducting magnets, a replaceable center column, and a modular subcritical nuclear energy zone. Its fusion core has a major radius of approximately 1.5 meters, with the goal of delivering approximately 40 MW of fusion neutron power at 14.1 MeV energy, serving as an industrial-grade neutron source. In terms of system design, Jinwu-1 amplifies fusion neutron energy through a subcritical fission blanket...

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MIT Research Proposes Framework for Assessing Economic Viability of Fusion Power Plants

MIT Research Proposes Framework for Assessing Economic Viability of Fusion Power Plants

2026-08-10

Researchers at the Massachusetts Institute of Technology (MIT) have recently proposed an assessment framework aimed at addressing the core question that fusion energy must confront in transitioning from scientific feasibility to commercial profitability: how can a fusion power plant achieve economic viability in the energy market? The related open-access paper, titled "Criteria for the Economic Viability of Fusion Power Plants," has been published online in the Journal of Fusion Energy. The paper is authored by Dennis Whyte, Professor of Nuclear Science and Engineering at MIT, and Andrew W. Lo, Professor of Finance at the MIT Sloan School of Management, with contributions from researchers at Rutherford Energy Ventures and the MIT Plasma Science and Fusion Center.

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Nuclear Application

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Korean Research Team First to Quantitatively Reveal Radiation Degradation Mechanisms in Gallium Arsenide Semiconductors

A semiconductor research team in Korea has recently succeeded, for the first time in the country, in quantitatively identifying the performance degradation mechanisms of gallium arsenide (GaAs) compound semiconductors under radiation environments. Gallium arsenide is regarded as a key material for next-generation aerospace, aviation, and defense systems, and the findings contribute to understanding the impact of high-energy radiation on the reliability of compound semiconductor devices. The research was led by Professor Kim Min-soo and Professor Hwang Hyun-jun from the Department of Semiconductor Engineering, in collaboration with the Advanced Radiation Research Center at the Korea Atomic Energy Research Institute and WaveTrack Corporation. The research team noted that communication and power equipment aboard low-Earth-orbit satellites or detectors, when exposed to high-energy radiation environments over extended periods, may experience...

2026-08-11

OSI Systems Secures Approximately $11 Million Order to Supply Eagle M60 Mobile Cargo and Vehicle Inspection Systems

OSI Systems, Inc. announced on August 10 that its Security division has received an order worth approximately $11 million to supply Rapiscan® Eagle® M60 mobile cargo and vehicle inspection systems to an international customer, along with related operator training and maintenance training support. Ajay Mehra, President and CEO of OSI Systems, stated that the customer selected the Eagle M60 to enhance its cargo and vehicle inspection capabilities. The system offers advantages in mobile deployment and imaging performance, helping security and customs authorities conduct inspections at ports, border crossings, roadside checkpoints, and other scenarios while maintaining traffic flow efficiency. According to the company, the Rapiscan® Eagle®...

2026-08-11

Texas A&M University Leads Development of Novel Wound Treatment for New World Screwworm

On August 10, 2026, the Texas A&M Engineering Experiment Station is leading the development of fast-acting, low-residue wound treatments for livestock infected with New World screwworm. The project, funded at $1.86 million, is led by Dr. Mustafa E. S. Akbulut, Associate Professor in the Artie McFerrin Department of Chemical Engineering at Texas A&M University, with the goal of providing ranchers and veterinarians with immediately deployable field treatment tools after infection occurs in animals. New World screwworm is a parasite that feeds on living tissue. According to available data, the pest is currently spreading in Central America and Mexico, with over 150,000 animal infection cases reported. Recently, cases have also emerged in Texas and New Mexico. Federal models predict that a large-scale outbreak in Texas could result in livestock losses exceeding $1.8 billion. If left untreated, these pests can cause severe harm to livestock, companion animals, and wildlife.

2026-08-11

Argentine CNEA Expert Appointed Vice Chair of European Working Group on Nuclear Medicine Isotope Supply Security

The Argentine National Atomic Energy Commission (CNEA) recently announced that Daniel Sestao, an engineer and the institution's radioisotope production manager, has been appointed Vice Chair of the Supply Security Working Group of the European Association of Nuclear Medicine. CNEA, which operates under the Nuclear Affairs Secretariat of Argentina's Ministry of Economy, views this appointment as recognition of its technical capabilities in nuclear medicine and its role in international collaboration. The Supply Security Working Group is composed of international experts and focuses on the continuity and sustainability of the medical radioisotope supply chain, covering strategic isotopes such as molybdenum-99, technetium-99m, and lutetium-177. These radioisotopes are widely used in the diagnosis and treatment of tumors and complex diseases, forming a critical component of the nuclear medicine system...

2026-08-11

Fujita Health University in Japan Advances Research on Expanding BNCT Indications for Deep-Seated Cancers, to Conduct 18F-FBPA PET Exploratory Evaluation

On August 10, Stella Pharma Corporation of Japan announced that it is collaborating with Fujita Health University and other institutions to advance research and development aimed at expanding Boron Neutron Capture Therapy (BNCT) to deep-seated cancers. As part of this project, Stella Pharma will participate in an exploratory study on 18F-FBPA uptake capacity in deep-seated cancers conducted by Fujita Health University. The study will use 18F-FBPA PET to evaluate the tumor accumulation of boron drugs used in BNCT in deep-seated cancers, and based on the findings, explore the possibility of expanding BNCT indications in the future. The study plans to collect data from 50 cases, including pancreatic cancer, hepatocellular carcinoma, and biliary tract cancer, to accumulate foundational evidence needed for the development of BNCT for deep-seated cancers. BNC...

2026-08-11

South Korea to Launch Real-Time Query System for CT and MRI Records in December to Reduce Duplicate Tests for Patients Transferring Hospitals

The Health Insurance Review and Assessment Service (HIRA) of South Korea announced on August 10 that it has established the "Appropriate Medical Utilization Review Committee" and, at its first meeting, included computed tomography (CT) and magnetic resonance imaging (MRI) examinations in the review scope of the real-time medical utilization management program. According to the plan, the program will be managed through the "Medical Care Benefit Details Confirmation System" following approval by the Minister of Health and Welfare. The system, built pursuant to Article 41-6 of the revised National Health Insurance Act, is expected to officially operate starting December 24. Once the system is in place, medical personnel will be able to query in real time the timing and relevant records of patients' CT and MRI examinations at other medical institutions before the patients undergo examinations, thereby reducing...

2026-08-11