This entry in the Basic to Breakthrough series describes how the Department of Energy has supported stellarator designs that could help harness the power of the stars here on Earth.
FeaturesFusion Energy#DOE#Office of Science#fusion#plasma physics#Basic to Breakthrough#Princeton Plasma Physics Laboratory
Prof Ong hopes the AI Foundry can compress discovery cycles for new materials from months or years to weeks. Professor Shyue Ping Ong wants AI to do more than predict whether a material might work. His vision is a discovery system that can propose new materials for a specific purpose, identify the most useful experiments to run, learn from every result and help scientists understand why a material
Fusion EnergyTechnology & Innovation#National University of Singapore#CDE Research News#Cde News#Research Impact#fusion#plasma physics#advanced materials#innovation
Technology & InnovationChinese Academy of Sciences
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
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
Sorghum is the main raw material used to make Chinese Baijiu. However, different varieties can be difficult to distinguish quickly and accurately, making rapid quality screening a challenge. A team led by Prof. WANG Qi from the Hefei Institutes of Physical Science of the Chinese Academy of Sciences, along with Luzhou Laojiao Co., Ltd, developed two data-fusion methods for rapid and accurate identi
Fusion Energy#Chinese Academy of Sciences#Research News#fusion#plasma physics
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
Lawrence Livermore National Laboratory (LLNL) is home to some of the greatest scientific breakthroughs of the century — from fusion ignition and exascale computing to monolithic telescopes. But thanks to LLNL's Innovation and Partnerships Office (IPO), those breakthroughs don't remain inside the fence. "We connect cutting-edge science with real-world applications, empowering businesses to thrive while advancing the United States' technological edge," said IPO Director Matthew Garrett. "IPO identifies economic opportunities, protects LLNL intellectual property, and transfers it to the
Fusion Energy#Lawrence Livermore National Laboratory#Academic Engagement#Economic Impact#Industry Collaborations#Top Story#fusion#plasma physics
Technology & InnovationChinese Academy of Sciences
Researchers have proposed that wakefulness generates sleep-promoting substances detectable in the cerebrospinal fluid (CSF). However, identities of these molecules, neural circuits that produce and sense them, and how the brain's key sleep-wake regulatory neurons participate in this process, remain mysterious. In a study published in Nature Neuroscience , Dr. ZHANG Zhe's group from the Center for
Fusion EnergyLife SciencesHealth#Chinese Academy of Sciences#Research News#Health#fusion#plasma physics#genomics#biology
A life-saving lung transplant is showcasing the world-leading role of Newcastle experts in improving the quality of donor organs and expanding access to transplantation for those on waiting lists.
The University of Maryland Greenebaum Comprehensive Cancer Center (UMGCCC) is the first in the Maryland, Delaware, Virginia and Washington D.C. region to offer an innovative cell therapy treatment for patients with an advanced type of soft tissue cancer known as synovial sarcoma. This single-infusion T-cell therapy, called TCR-T therapy, involves engineering a patient’s own white blood cells to re
Fusion EnergyMedical Research#University of Maryland Medical Center#UMMC News#UM Greenebaum Comprehensive Cancer Center#fusion#plasma physics#nuclear medicine#cancer research
Technology & InnovationUniversity of Maryland Medical Center
A 41-year-old Silver Spring woman who has endured debilitating pain crises and frequent hospitalizations throughout much of her life as the result of sickle cell disease has been treated at the University of Maryland Medical Center (UMMC) with her own genetically engineered stem cells in an effort to prevent life-threatening complications and achieve a long-term cure.
Fusion EnergyMedical ResearchLife Sciences#University of Maryland Medical Center#UMMC News#UM Greenebaum Comprehensive Cancer Center#fusion#plasma physics#nuclear medicine#cancer research#genomics