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US FRIB Experiment Reveals Magnetic Origin of Anomalous Low-Energy Gamma-Ray Enhancement

US FRIB Experiment Reveals Magnetic Origin of Anomalous Low-Energy Gamma-Ray Enhancement

According to an August 21 announcement from Lawrence Livermore National Laboratory, a new study led by the U.S. Facility for Rare Isotope Beams (FRIB) with participation from researchers at Lawrence Livermore National Laboratory and other institutions has provided a new experimental explanation for the long-standing low-energy enhancement phenomenon in nuclear physics. The findings were published in the journal Nature. An experiment at the Facility for Rare Isotope Beams (FRIB) has yielded new results, answering a fundamental question about nuclear structure. (Image: FRIB) Gamma rays are a form of electromagnetic radiation. When an excited nucleus loses energy during radioactive decay and transitions to a lower, more stable energy level, it emits gamma rays. Over the past few decades, scientists have discovered that certain nuclei emit anomalously large numbers of low-energy gamma rays, but this phenomenon does not occur in all nuclei, and its occurrence conditions have been difficult to predict reliably in theory.

2026-08-21

Wisconsin Electric Power Company signs 20-year power purchase agreement with NextEra for Point Beach nuclear plant

Wisconsin Electric Power Company signs 20-year power purchase agreement with NextEra for Point Beach nuclear plant

WEC Energy Group said its subsidiary Wisconsin Electric Power Company has signed a 20-year power purchase agreement with NextEra Energy Point Beach to purchase 86% of the capacity, energy, ancillary services, and environmental attributes from both units of the Point Beach Nuclear Plant in Manitowoc County, Wisconsin. According to a filing submitted to the U.S. Securities and Exchange Commission (SEC), the new agreement remains subject to approval by the Public Service Commission of Wisconsin (PSC). If approved...

2026-08-20

Port of Long Beach Advances Offshore Small Modular Reactor Project

Port of Long Beach Advances Offshore Small Modular Reactor Project

The Port of Long Beach in California, USA, is advancing an exploratory project for an offshore small modular reactor (SMR) system that could one day provide electricity for port operations, terminal equipment, charging infrastructure, and vessels at berth. If the project ultimately comes to fruition, it could become one of California's first new nuclear power projects in nearly 50 years. The project partner is Bluecore Energy, a startup founded less than a year ago that plans to develop small nuclear reactors deployable on floating barges. The Port of Long Beach has leased the Pier 48 site to the company for technology development and testing. Previously, the Port of Long Beach also...

2026-08-19

US FRIB Research Reveals Low-Energy Gamma-Ray Enhancement Originates from Nuclear Magnetic Transitions

US FRIB Research Reveals Low-Energy Gamma-Ray Enhancement Originates from Nuclear Magnetic Transitions

An international research team led by the US Facility for Rare Isotope Beams (FRIB), with participation from Lawrence Livermore National Laboratory (LLNL) and other institutions, recently published findings in Nature that explain a long-standing question in nuclear physics: why some atomic nuclei emit anomalously high numbers of low-energy gamma rays. Image: FRIB Gamma rays are a type of electromagnetic radiation. Excited atomic nuclei release gamma rays during radioactive decay, gradually returning to lower, more stable energy levels. Over the past few decades, scientists have discovered that certain nuclei exhibit a low-energy enhancement phenomenon, where the number of low-energy gamma rays emitted exceeds expectations. However, this phenomenon is not universal, and its occurrence is theoretically difficult to predict.

2026-08-18

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

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

Russian Researchers Find Low-Energy Electron Beam and X-Ray Treatment of Wheat Seeds Can Increase Yields

Russian Researchers Find Low-Energy Electron Beam and X-Ray Treatment of Wheat Seeds Can Increase Yields

Researchers from the D.V. Skobeltsyn Institute of Nuclear Physics at Lomonosov Moscow State University, in collaboration with the Faculty of Physics and the Faculty of Chemistry of Lomonosov Moscow State University, as well as the Siberian Federal Scientific Centre of Agro-BioTechnologies of the Russian Academy of Sciences, have found that pre-sowing treatment of wheat seeds with low-energy electron beams and X-rays can help increase crop yields and enhance plant resistance to diseases. The study focused on the wheat variety Novosibirskaya 29 and included laboratory experiments, two consecutive years of field trials, and computer modeling. The results showed that a dose range of 5 to 15 Gy is suitable as a pre-sowing irradiation treatment parameter for wheat seeds. According to Moscow State University...

2026-08-14

New National Standard GB/T 18525.1-2026 — The Red Beans and Mung Beans You Eat May Have Been

New National Standard GB/T 18525.1-2026 — The Red Beans and Mung Beans You Eat May Have Been

Starting December 1, 2026, a new national standard concerning food safety on your dining table will officially take effect — Recently, the State Administration for Market Regulation and the Standardization Administration of China issued the 2026 No. 23 National Standard Announcement, among which the "Irradiation Technology for Agricultural Products — Part 1: Legumes and Their Products" (GB/T 18525.1-2026) is particularly noteworthy. This standard, led by the Institute of Food Science and Technology, Chinese Academy of Agricultural Sciences, will officially take effect on December 1, 2026, replacing the old standard (GB/T 18525.1-2001) that has been in use for over 20 years. When hearing the word "irradiation," many people's first reaction is: "Is it safe?" "Will food become radioactive after being irradiated..."

2026-08-13

Longkou Lanfu Electron Accelerator Technology Co., Ltd. Commences Operations, Deploying High-Energy Electron Beam Irradiation Processing

Longkou Lanfu Electron Accelerator Technology Co., Ltd. Commences Operations, Deploying High-Energy Electron Beam Irradiation Processing

On August 10, 2026, Longkou Lanfu Electron Accelerator Technology Co., Ltd. held its opening ceremony. Government officials, industry experts, university scholars, partners, and the management team of Lanfu Co., Ltd. attended the event to jointly witness the launch of the Longkou Irradiation Center. At the ceremony, Liu Zhongli, Dean of the School of Nuclear Engineering at Yantai University, recognized Lanfu's development in related technology fields from the perspectives of industrial cooperation and industry-academia-research integration. Customer representatives noted that Lanfu has built a solid reputation in technical services and corporate commitment fulfillment. Miao Cuibo, Chairman of Lanfu Co., Ltd., stated in his address that the company has long been deeply engaged in the field of high-energy electron beam irradiation technology, with a service network covering multiple core regions nationwide, and continues to drive industrial quality improvement and efficiency enhancement through technological innovation.

2026-08-11

First Heavy Ion Beam Obtained at DC-140 Accelerator of the Joint Institute for Nuclear Research in Dubna, Russia

First Heavy Ion Beam Obtained at DC-140 Accelerator of the Joint Institute for Nuclear Research in Dubna, Russia

The Flerov Laboratory of Nuclear Reactions at the Joint Institute for Nuclear Research (JINR) in Dubna, Russia, has completed the construction of the DC-140 accelerator complex and obtained an accelerated heavy ion beam for the first time during commissioning on August 4. This achievement marks significant progress in the JINR applied technology development program and signifies that a new ion beam platform designed to meet scientific and industrial needs for decades to come has entered its critical commissioning phase. The DC-140 project was launched in 2020 to replace the existing U-200 and IC-100 cyclotron complex. The new facility is designed to address a wide range of fundamental and applied research needs, including solid-state physics, radiation materials science, material surface modification, and track membrane production...

2026-08-11

KEK in Japan Completes World's First "Quantum Multi-Beam Utilization" Synchrotron Radiation Beamlines

KEK in Japan Completes World's First "Quantum Multi-Beam Utilization" Synchrotron Radiation Beamlines

On August 6, the High Energy Accelerator Research Organization (KEK) announced that the BL-11A and BL-11B beamlines at its Photon Factory (PF) synchrotron radiation experimental facility have been completed as the world's first quantum multi-beam utilization beamlines, enabling the simultaneous use of hard X-ray and soft X-ray beams. According to reports, BL-11A and BL-11B were constructed in collaboration with the Synchrotron Radiation Academic Infrastructure Network. This network consists of synchrotron radiation facilities operated by university joint-use organizations and joint-use/joint-research centers, positioned as scientific research and educational infrastructure. The main feature of the new beamlines is the ability to simultaneously use hard X-ray and soft X-ray under the same experimental conditions, completing observations that previously required separate measurements...

2026-08-07

First Observation of Anti-Kaonic Nuclei in Photon Beam Experiments

First Observation of Anti-Kaonic Nuclei in Photon Beam Experiments

The LEPS2/Solenoid collaboration, composed of researchers from the Research Center for Nuclear Physics at Osaka University, Kyoto Sangyo University, the Research Center for Advanced Quantum Beam Science at Tohoku University, Korea University, Gifu University, the Institute of Modern Physics of the Chinese Academy of Sciences, RIKEN, Kyoto University, the Institute of Physics at Academia Sinica in Taiwan, and the University of Saskatchewan in Canada, has for the first time observed nuclei containing anti-kaons in a photon beam experiment. This achievement provides new experimental evidence confirming the existence of anti-kaonic nuclei and offers important clues for understanding high-density nuclear matter and the internal structure of neutron stars. The research team conducted the experiment at the LEPS2 laser-electron photon facility at the large synchrotron radiation facility SPring-8 in Hyogo Prefecture, Japan...

2026-08-07

Sevmash Advances Production of Main Thrust Bearings for Icebreaker "Stalingrad"

Sevmash Advances Production of Main Thrust Bearings for Icebreaker "Stalingrad"

Sevmash, a subsidiary of the United Shipbuilding Corporation (USC), is continuing production of the main thrust bearings for the Stalingrad, the sixth serial universal icebreaker of Project 22220. One set of bearings for this vessel comprises three bearing units. Currently, two of these units have been delivered to Workshop 16 for bearing housing machining; the bearing raceways are also being machined and assembled in this workshop. The housing of the third unit is being assembled in the plant's hull welding shop. Meanwhile, in a dedicated area of Sevmash Workshop 4, bearing internal filling operations are underway, including the manufacture of bushings and bearing housings with anti-friction layers and filling with hot Babbitt metal. Each unit requires the installation of 24 bearing housings. This stage is one of the most labor-intensive processes in bearing manufacturing.

2026-08-07

CGN Technology joins forces with enterprises to build China's first fully self-developed electron beam curing coil coating industrial chain

CGN Technology joins forces with enterprises to build China's first fully self-developed electron beam curing coil coating industrial chain

On August 5, CGN Dasheng Accelerator Technology Co., Ltd., a subsidiary of CGN Technology, signed a strategic cooperation agreement on electron beam curing coil coating with Zhejiang Jiaguangshu New Material Technology Co., Ltd. Leveraging the electron accelerator equipment independently developed and manufactured by CGN Dasheng, combined with the partner's large-scale mass production process capabilities, the two parties jointly built China's first fully self-controlled, fully domestically produced complete industrial chain for electron beam curing coil coating, marking the official entry of China's color-coated steel industry into a new era of solvent-free, zero-VOC (volatile organic compounds), room-temperature green curing. CGN Dasheng and Zhejiang Jiaguangshu signed the strategic cooperation agreement on electron beam curing coil coating. Electron beam curing is...

2026-08-06

CGN Dasheng Joins Hands with Zhejiang Jiaguangshu to Build China's First Fully Self-Developed Electron Beam Curing Coil Steel Coating Industry Chain

CGN Dasheng Joins Hands with Zhejiang Jiaguangshu to Build China's First Fully Self-Developed Electron Beam Curing Coil Steel Coating Industry Chain

On August 5, CGN Dasheng Accelerator Technology Co., Ltd. signed a strategic cooperation agreement on electron beam curing coil steel coating with Zhejiang Jiaguangshu New Material Technology Co., Ltd. Leveraging the electron accelerator equipment independently developed and manufactured by CGN Dasheng, combined with the partner's large-scale mass production process capabilities, the two parties jointly built the first fully self-controllable, fully domestically produced complete industry chain for electron beam curing coil steel coating in China, marking the official entry of China's color coating industry into a new era of solvent-free, zero VOC (volatile organic compounds), and room-temperature green curing. ▲CGN Dasheng and Zhejiang Jiaguangshu sign strategic cooperation agreement on electron beam curing coil steel coating Electron beam curing is a revolutionary new technology for metal coil coating...

2026-08-06

CGN Dasheng Launches Nondestructive Testing Solutions for Power Batteries to Address New Safety Requirements for Electric Vehicle Batteries

CGN Dasheng Launches Nondestructive Testing Solutions for Power Batteries to Address New Safety Requirements for Electric Vehicle Batteries

The national mandatory safety standard "Safety Requirements for Traction Batteries for Electric Vehicles" officially takes effect on July 1, 2026, further raising the requirements for power battery safety inspection. In response to the needs for internal defect identification, fault tracing, and in-line production testing, CGN Dasheng Accelerator Technology Co., Ltd. has launched multiple nondestructive testing solutions, utilizing X-ray imaging, industrial CT, and electron beam scanning microfocus X-ray source technologies to provide inspection means for power battery quality control. The internal structure of power batteries is complex, with cells typically composed of multiple layers of materials wound or stacked. During production, subtle defects such as electrode plate wrinkles, metal debris contamination, positive-negative electrode misalignment, and welding porosity can...

2026-08-04