
Mapping Poplar Tree Proteins
Proteome atlas offers new view of bioenergy crop’s molecular machinery.
Proteome atlas offers new view of bioenergy crop’s molecular machinery.
Thomas Jefferson Laboratory lends expertise in cryogenics developments.
Discovery could provide a deeper understanding of the dynamics of the three quarks enslaved inside the nucleon.
Precision analytical techniques developed for fundamental experiments in nuclear physics now enable routine measurements of ultra-low concentrations of Krypton radioisotopes in samples of water, ice, and gas.
The reversed field pinch’s helical state reveals nonlinear physics of plasma self-organization.
Focusing of laser accelerated proton beams advances with a novel cone target design.
Studies of different fusion reactions have shown unexpected plasma behavior in inertial fusion implosions.
Real time steering of microwave beams is used to suppress deleterious modes on DIII-D.
Recent experiments have confirmed the great potential of a novel plasma-material interface concept.
New findings indicate that ionized plasmas like those in neon lights and plasma TVs can be used to sterilize water, making it antimicrobial for as long as a week after treatment.
Ultra high intensity magnetic fields open new opportunities in high energy density plasma science.
Recent experiments on Alcator C-Mod have investigated an improved confinement regime, called “I-Mode”, expanding its operational range and pointing toward its applicability on future devices.