Advanced 3D Detectors for Research
Gamma-ray detectors built with silicon photomultiplier arrays provide high-resolution 3D imaging for research.
Gamma-ray detectors built with silicon photomultiplier arrays provide high-resolution 3D imaging for research.
Unusual reaction eschews high temperatures and water to lock away climate-changing carbon dioxide.
Long-term measurement records improve the representation of clouds in climate and weather forecast models.
Unique analysis of the reaction of propene with oxygen atom reveals the influence of electron spin on combustion chemistry.
Adding an oxide sieve, a layer containing nanocavities, to a catalyst surface makes the catalyst selective for specific reactions and increases efficiencies for chemical processes.
Supercomputers + Software + electromagnetic images yield new way to discriminate underground deposits from surrounding geology.
New microscopy with nanometer-sized resolution may bring revolutionary new understanding to energy storage technologies.
Recent experiments have confirmed the great potential of a novel plasma-material interface concept.
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.
Real time steering of microwave beams is used to suppress deleterious modes on DIII-D.
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.