We're an @ENERGY Lab that delivers discovery science and transformative technology to power and secure America's future. Home to #RHIC#NSLSII#CFNatBrookhaven
After decades of research and development, the advanced accelerator magnets and detector components we're producing for the High Luminosity Large Hadron Collider at @CERN are nearing completion. #HiLumiLHC https://t.co/EEFpegVJ6t
There’s a new lighthouse on Long Island. But instead of shining light to guide ships through waterways, this one transmits and receives particles of light that carry quantum information. https://t.co/3ryQUzkTWw
We're leading one of eight newly funded Quantum Technology Outpost projects.
Researchers will develop new ways to investigate the quantum information carried by particles in collisions at facilities like the future #ElectronIonCollider. https://t.co/G9neu1UJ8u
Congrats to the first students who completed the Nuclear Technology and Radiochemistry Technical Pathway! This pilot program, which included 3 weeks at Brookhaven, is helping prepare the next generation of the nuclear technology workforce. #BrookhavenSciEd https://t.co/JsuV3y7qJq
The nation’s longest quantum network is one step closer to becoming wireless.
Researchers at Brookhaven Lab and @stonybrooku have successfully transmitted light particles containing quantum information through open air between the two institutions. https://t.co/Wp3pZyPJzM
The U.S. Department of @ENERGY's support for basic research in 1985 set the foundation for today's quantum technology.
Now, National Quantum Information Science Research Centers like @C2QAdvantage are carrying it forward. #C2QA https://t.co/fLqFwTvNg6
Jordan Ziegler's experience as an operator at #RHIC solidified his desire for a career with mission-driven teamwork, which led him to joining the @usairforce. https://t.co/aawWrDjirF
This low-cost, sulfur-tolerant compound could convert wasted natural gas into easily transportable commodity chemicals and fuels. #NSLSII https://t.co/14mCiZIh7U
Once @DUNEScience's detector modules are filled with liquid argon, scientists won't have access to the submerged components for decades.
To prepare, researchers are running a stress test on a prototype at @CERN pushing the technology to its limits. https://t.co/iRolyvS7cQ
"I'm excited to work with this outstanding team to deliver a facility that will advance U.S. scientific leadership and serve researchers around the world for decades to come,” Weeks said. #ElectronIonCollider https://t.co/vZa3bP771F
This state-of-the-art scanning transmission electron microscope could lead to new breakthroughs in energy technologies, quantum materials, microelectronics, and beyond. #CFNatBrookhaven https://t.co/REeK9lc0RQ
As the demand for electricity grows, especially from facilities like data centers, we're developing AI models to expand the power grid rapidly and efficiently.
GridSearch is our “AI for AI” solution.
#AI#GenesisMission
https://t.co/h7i6N9CIkF
The #ElectronIonCollider's controls system is more compact, more powerful, and capable of faster data transfer than previous accelerator systems. https://t.co/vImfrUIuON
Our accelerator and detector contributions to the High-Luminosity Large Hadron Collider at @CERN have reached major milestones. #HiLumiLHC https://t.co/EEFpegVJ6t
The powerful capabilities of the Soft Inelastic X-ray Scattering (SIX) beamline at #NSLSII enabled researchers to identify how light can transform materials into "hidden" states. https://t.co/8wTKJqkzKZ
Through @C2QAdvantage, our researchers have helped turned superconducting qubits into one of the most promising approaches towards quantum computing. #C2QA https://t.co/fLqFwTvNg6