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Keyword:Fermi
US Company DTE Advances 177 MW Power Uprate at Fermi 2 Nuclear Power Plant
DTE Electric, a subsidiary of Michigan utility giant DTE Energy, has formally submitted a 20-year long-term Integrated Resource Plan (IRP) to the Michigan Public Service Commission (MPSC). In the clean power restructuring layout of the plan, DTE explicitly establishes nuclear power as an indispensable zero-carbon baseload hub, and plans to carry out a deep modernization and technical upgrade of the Fermi 2 Nuclear Power Plant in Monroe County in 2036, achieving an additional 177 megawatts (MW) of clean carbon-free power output. As Michigan's core operating nuclear power infrastructure, Fermi 2 is equipped with a single...
2026-09-28
U.S. Department of Energy Selects Fermilab to Lead AI Project to Enhance Superconducting Radio-Frequency Cavity Control in Particle Accelerators
The U.S. Department of Energy's Genesis Program recently selected an artificial intelligence project led by Fermi National Accelerator Laboratory, supporting its collaboration with national laboratories, universities, and industry to use AI and machine learning technologies to improve resonance control in particle accelerators. The project aims to enhance accelerator operational performance and beam stability while reducing energy consumption and operating costs. Superconducting radio-frequency cavities are being assembled and tested, ready for installation on the Proton Improvement Plan-II at the Fermilab Accelerator Complex. By finely tuning the resonant frequency of the cavities, scientists can optimize acc...
2026-08-21
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
Fermi Signs 222 MW Data Center Lease Agreement with TensorWave
Fermi Inc. announced on August 10 that its subsidiary, Fermi Campus 1 LLC, has signed its first binding customer lease agreement with TensorWave TEX1, LLC, a subsidiary of AI cloud service provider TensorWave Inc. The agreement covers the initial phase of Fermi's Project Matador campus in Carson County, Texas, with a capacity of 222 megawatts. Under the agreement, Fermi will be responsible for the development, construction, and delivery of the data center facilities, with TensorWave taking occupancy in phases. The facility is planned to...
2026-08-14
Laser spectroscopy reveals for the first time the precise nuclear shape of fermium-255, offering new clues in the search for superheavy elements
An international research team has, for the first time, precisely determined the nuclear structure of the actinide fermium-255, confirming that its nucleus exhibits a pronounced prolate deformation, similar to a rugby ball. The study, published in *Physical Review Letters*, was conducted in collaboration with 18 institutions, including Johannes Gutenberg University Mainz in Germany, the Helmholtz Institute Mainz, and the University of Gothenburg in Sweden. The findings not only correct several unreasonable nuclear property values in previous standard data tables but also provide crucial experimental validation for modern nuclear theory models. Fermium is a synthetic heavy element that does not exist in nature. Fermium-255 contains 100 protons and 155 neutrons, making its experimental production extremely challenging. The research team...
2026-08-08