High-intensity laser interactions have proven effective in generating diverse radiation sources, such as ions, neutrons, and X-rays, each with unique ...
ELMIC aims to advance the basic science driving the integration of new materials and processes into future microelectronic ...
The BMBF-funded project “Inertial Fusion Energy (IFE) Targetry HUB for DT Inertial Fusion” (IFE Targetry HUB, for short) is ...
The project aims for the next evolution of EUV lithography, centered around the lab-developed driver system named the Big ...
Very early-stage breast cancers are notoriously tough to spot via mammograms, but new technology might make detecti ...
Much of this progress has been achieved using gaseous plasma targets and the beaming of the electrons is typically along the direction of the laser itself. It is therefore imperative to find ways ...
This breakthrough was accomplished by employing a new dual-laser system and an innovative method for creating a plasma channel. Researchers at the Lawrence Berkeley National Laboratory (Berkeley ...
Laser-plasma accelerators could someday significantly reduce the size and cost of particle accelerators used in high-energy physics, medicine, materials science, and beyond. BELLA researchers used a ...
Scientists have used a pair of lasers and a supersonic sheet of gas to accelerate electrons to high energies in less than a foot. The development marks a major step forward in laser-plasma ...
Cold laser therapy beams light energy at your skin to reduce pain and inflammation deep within an area of your body, like your knee. It’s used to treat knee pain from osteoarthritis (OA), as ...
The development marks a major step forward in laser-plasma acceleration, a promising method for making compact, high-energy particle accelerators that could have applications in particle physics ...
Rick Olson knows that growth of Romeoville, Ill.-based Roll Machining Technologies & Solutions means adapting and trusting people to innovate and make hard decisions. The Tube and Pipe Journal became ...