New research using meteorite grains reveals that the material incorporated into Earth's planets and life has younger cosmic roots than previously thought. The study found that most of these grains spent less time in interstellar space than estimated, with some as young as 3 million years old.
The Interstellar Boundary Explorer (IBEX) mission will conduct extremely high-altitude orbits above Earth to investigate and capture images of processes taking place at the farthest reaches of the solar system. The spacecraft will provide scientists with a new understanding of the global interaction between our sun and the galaxy.
Researchers at Carnegie Institution find unusual new form of carbon in meteorites, which could affect measurements of the universe's expansion and dark energy models. The discovery may have implications for understanding Type1a supernovae and the accelerating expansion of the universe.
Theoretical physicists use mathematical modeling to describe interstellar shock waves, which could provide insights into the formation of stars, planets, and life. The study's findings have implications for NASA's upcoming missions and may shed light on the solar system's history and chemical origins.
Voyager 2 has entered the heliosheath, a vast region at the edge of our solar system where the solar wind meets interstellar space. The spacecraft's Plasma Science instrument provided direct measurements of the solar wind, revealing an unusual shock wave with lower temperatures than predicted.
UCR researchers develop more stable carbene, a family of compounds used in pharmaceuticals and petrochemicals. The new molecule has a unique shape and size, potentially leading to even more powerful catalysts.
Scientists confirm Voyager 1's crossing of the termination shock at 94 AU, marking a significant milestone on its journey to interstellar space. The spacecraft is expected to reach the heliopause in another 10 years or so, providing valuable insights into the solar system and beyond.