Cooling Fusion Plasmas from the Inside Out
New simulations show diamond shells can cool plasmas more efficiently and prevent runaway electrons
New simulations show diamond shells can cool plasmas more efficiently and prevent runaway electrons
Extreme-scale turbulence simulation and AI discover a formula to predict the crucial exhaust heat-load width in future tokamak fusion reactors.
High-yield miscanthus and switchgrass are promising alternatives to traditional annual crops for biofuels.
Research produces an improved dynamical core to model the evolution of winds, temperatures, and pressures in the atmosphere.
White-rot fungi use lignin from wood as a source of carbon.
Fires increase the number of fungi when aspen groves regenerate.
State-of-the-art techniques expand scientists’ fundamental understanding of heavy element 99, Einsteinium.
Chemical fuel assembles molecules with multiple unstable bonds.
Transcription of adjacent genes into a single RNA molecule is widespread in green algae, challenging understanding of gene expression in eukaryotes.
Conserved genomic neighborhoods provide a new discovery tool for understanding gene function in eukaryotes.
A novel computational framework allows researchers to quantify the relative importance of different ecological processes in the composition of microbiomes
New analysis assesses the realism and biases of tropical cyclones at various resolutions in E3SM