Artificial Spin Ice - A New Playground to Better Understand Magnetism
Experiments using novel magnetic nanostructures confirm theoretically predicted behavior – bolstering their utility as a tool for understanding complex magnetic materials.
Experiments using novel magnetic nanostructures confirm theoretically predicted behavior – bolstering their utility as a tool for understanding complex magnetic materials.
New material with a layered, atomic sandwich structure has unique optoelectronic properties.
New microscopy technique reveals giant enhancement of coupling between magnetic and electric dipoles that could lead to novel electronic devices.
Discovery demonstrates how metamaterials may be used in non-invasive material imaging and sensing, and terahertz information technologies.
Advances in materials processing enable harvesting of energy from heartbeats.
Carbon nanotubes and inorganic nanoparticles enhance photosynthetic activity and stability.
Genetic insights into nutrient movement will enhance bioenergy feedstock’s sustainability.
Mycorrhizae inhabiting plant roots have major impact on carbon release rates.
Researchers count the number of radioactive krypton-81 atoms remaining in ice using a laser trap.
Worms produce tiny clumps of soil that keep carbon taken in by plants from rapidly degrading and re-entering the environment.
Discovery of a new bonding mechanism has enabled the facile fabrication of arrays of semiconductor microstructures.
Results show absorption properties of brown carbon depend more on burn conditions than fuel type, providing important information to model climates.