Sensing systems typically use separate photoelectric sensors for non-contact perception and pressure sensors for contact perception. Because these sensors are spatially separated and often acquire signals at different times, their data must be aligned and fused afterward, introducing potential latency, positional mismatch, and signal crosstalk. In a study published in Nature Sensors , a team led b
Fusion Energy#Chinese Academy of Sciences#Research News#fusion#plasma physics
Scientists have recently reconstructed the ancestral karyotype of the banana family, revealing how chromosome numbers decreased stepwise from 17 to 9 - 11 over evolutionary time. The study was led by scientists from the South China Botanical Garden (SCBG) of the Chinese Academy of Sciences (CAS), in collaboration with researchers from Sichuan University and other institutions . The findings were p
Fusion EnergyLife SciencesBiodiversity#Chinese Academy of Sciences#Research News#biodiversity#paleontology#fusion#plasma physics#genomics#biology
Technology & InnovationLawrence Livermore National Laboratory
The Livermore Lab Foundation (LLF) recently convened supporters, Lawrence Livermore National Laboratory (LLNL) leaders, partners and community members to celebrate 10 years of philanthropic impact. The event recognized a decade dedicated to unlocking scientific potential, advancing groundbreaking research and inspiring the next generation of STEM leaders. "Ten years ago, we set out with a vision to connect philanthropic investments with cutting-edge scientific innovation," said LLF Board Chair Dona Crawford. "[This event] isn't just a milestone on a calendar; it's a reflection of what
Diamond is more than a dazzling gem — the extremely hard form of carbon makes up the pellet that encases fuel for inertial confinement fusion, and scientists believe it rains down deep inside ice giant planets like Neptune and Uranus. In both cases, the material experiences enormous pressures. Until now, experiments and simulations have disagreed about how it actually behaves under those conditions. In a new study, published in Nature Physics, researchers at Lawrence Livermore National Laboratory (LLNL) document how diamond melts under pressures three times greater than the conditions at
Fusion EnergyTechnology & Innovation#Lawrence Livermore National Laboratory#High-Energy-Density Science#Laboratory Directed Research and Development#National Ignition Facility and Photon Science#Physical and Life Sciences#Top Story#fusion#plasma physics
The Department of Energy’s (DOE) Oak Ridge National Laboratory (ORNL) earned a new lab record with 22 R&D 100 Awards in 2026 for technologies that advance energy, manufacturing, computing, biotechnology and other fields. ORNL led 18 of the winning technologies and contributed to four additional award-winning projects led by partner institutions.
Fusion EnergyLife SciencesEnvironment & Climate#Oak Ridge National Laboratory#fusion#plasma physics#genomics#biology#climate#decarbonization#grid
The U.S. National Science Foundation is investing $90 million over five years to support three new NSF Science and Technology Centers (NSF STC). These centers will advance American leadership in…
Fusion EnergyMedical ResearchLife Sciences#U.S. National Science Foundation#fusion#plasma physics#medical research#clinical research#genomics#biology
What makes NASA’s Nancy Grace Roman Space Telescope a powerful tool with an unprecedented wide view of the cosmos? NASA engineers who designed, built, and tested Roman pop the hood to explain the unique technology inside. Go inside the huge NASA clean room where Roman was built, and get an up-close look at the testing campaign that ensures Roman will succeed in the cold, inhospitable conditions of
AUG 21, 2026 | Russ Nelson (L-R) Savaria Parrish, Pragya Natarajan and Stephanie Manasterski, the first three UAH graduate students to receive fellowships in the National Science Foundation’s (NSF) Established Program to Stimulate Competitive Research (EPSCoR) Graduate Fellowship Program (EGFP). Courtesy Savaria Parrish, Pragya Natarajan and Stephanie Manasterski The University of Alabama in Huntsville (UAH), a part of The University of Alabama System, is welcoming three graduate students who wo
Fusion EnergySpace & Astronomy#University of Alabama in Huntsville#Newsroom#fusion#plasma physics#astronomy#astrophysics
Technology & InnovationChinese Academy of Sciences
In a study published in Nature on August 19, a team led by Profs. ZENG Changgan and CHENG Guanghui from the University of Science and Technology of China of the Chinese Academy of Sciences, along with Prof. JIANG Qingdong from Shanghai Jiao Tong University, Prof. Frank Wilczek from Massachusetts Institute of Technology, and other collaborators, for the first time, have achieved the enhancement of
Technology & InnovationQuantum#Chinese Academy of Sciences#Research News#Quantum#advanced materials#innovation
NASA’s Nancy Grace Roman Space Telescope is on a quest to discover planets outside our solar system. NASA scientists Bertrand Mennesson and Vanessa Bailey explain how Roman’s wide view will spot as many as 100,000 new exoplanets in a galactic census that will change how we understand planetary system formation. And we’ll learn about an experimental camera that will allow scientists to take direct
The Department of Energy (DOE) has officially committed funding to establish UNITY-3, a world-class fusion breeding blanket test facility at Oak Ridge National Laboratory (ORNL), with Kyoto Fusioneering (KF) relocating its U.S. headquarters to Tennessee to help build and operate it. The facility is part of the recent public-private strategic partnership established between DOE, ORNL and KF to buil
Fusion EnergyParticle Physics#Oak Ridge National Laboratory#fusion#plasma physics#Particle Physics#High Energy Physics
Technology & InnovationChinese Academy of Sciences
An international research team has developed a new quantum-classical framework for computing quantum many-body structure and dynamics. The findings were published in Physical Review C . Ab initio many-body calculations serve as a fundamental tool for understanding strongly correlated quantum systems, with broad applications in quantum chemistry and nuclear physics. However, the Hilbert space of su
Technology & InnovationQuantum#Chinese Academy of Sciences#Research News#Quantum#advanced materials#innovation#Lawrence Berkeley National Laboratory
Eleven Suffolk County Community College students and recent graduates completed an innovative pilot workforce development program shaped by nuclear technology and radiochemistry expertise at Brookhaven Lab.
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Technology & InnovationMassachusetts Institute of Technology
Their new study aims to give budding industry a framework for understanding how fusion can be profitable.
Fusion EnergyLife SciencesNuclear science and engineering#Massachusetts Institute of Technology#Today’s Featured News#MIT News#Nuclear science and engineering#sustainability#fusion#Energy#Renewable energy
Scientists at the Department of Energy’s Oak Ridge National Laboratory created a platform that pinpoints genetic triggers that turn microbes into efficient factories for new chemicals and materials. The method enables rapid, precise reprogramming of bacteria as biotechnology tools, supporting the domestic production of valuable products and the recovery of critical minerals and materials, enhancin
Fusion EnergyLife SciencesEnvironment & Climate#Oak Ridge National Laboratory#fusion#plasma physics#genomics#biology#climate#decarbonization#Joint Genome Institute
The Department of Energy's Oak Ridge National Laboratory has licensed a suite of cryogenic pellet fueling technologies to Type One Energy, advancing a critical capability for high-performance fusion plasma operations.
Fusion Energy#Oak Ridge National Laboratory#fusion#plasma physics
Technology & InnovationChinese Academy of Sciences
Heavy-fermion superconductors have long served as a key playground for exploring unconventional superconductivity and quantum criticality—phenomena that emerge from the delicate competition between Kondo screening and RKKY magnetic ordering. In recent years, the discovery of two-dimensional van der Waals (vdW) heavy-fermion materials has opened fresh avenues for investigating how reduced dimension
Technology & Innovation#Chinese Academy of Sciences#Research News#advanced materials#innovation
The U.S. National Science Foundation is investing $50 million in research infrastructure to enable the discovery and development of materials that can withstand extreme conditions, from lightweight…
Fusion EnergyTechnology & Innovation#U.S. National Science Foundation#fusion#plasma physics#advanced materials#innovation