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Even stars get fat

A team of scientists discovered that blue stragglers, massive rogue stars found in globular clusters, are formed through a process known as stellar cannibalism. This theory is supported by observations of over 50 globular clusters and suggests that binary star systems play a key role in the formation of these stars.

SourceMcMaster University·JournalNature·DateJan 14, 2009

More star births than astronomers have calculated

Astronomers have discovered that the number of newly formed stars is higher than initially calculated, with heavy stars forming in clusters near the center of galaxies. The study found that these clusters are more common in the core regions of galaxies, leading to a different ratio of heavy to light stars.

SourceUniversity of Bonn·JournalNature·DateOct 1, 2008

Utah steps into the heavens

The University of Utah is joining the third Sloan Digital Sky Survey to map distant galaxies, understand galaxy evolution, and discover planets with suitable environments for life. The survey will also help scientists test theories about dark energy and explore the mysteries of the universe.

Stellar still births

Researchers at the University of Bonn discover brown dwarfs must be treated as a separate class due to their unique mass distribution and 'mating behaviour'. This reclassification challenges current understanding of stellar formation and population dynamics.

SourceUniversity of Bonn·JournalMonthly Notices of the Royal Astronomical Society·DateAug 22, 2008

Exploding star in NGC 2397

A team of astronomers from Queen's University Belfast have discovered the nature of five supernova precursor stars using Hubble images. The study reveals that stars with masses as low as seven times the mass of the Sun can explode as supernovae, challenging current understanding of massive star collapse.

Astronomy technology brings nanoparticle probes into sharper focus

Researchers used astronomy technology to develop a system that provides more precise images of single molecules tagged with nanoprobes, allowing for detailed information about molecular binding and gene sequences. The technology enables high-speed detection and identification of individual molecules at nanometer resolution.

SourceGeorgia Institute of Technology·JournalProceedings of the National Academy of Sciences·DateFeb 19, 2008

AGU Journal highlights -- Jan. 10, 2008

Saturn's rings exhibit fine-scale structures with periodic radial variation in optical depth, while daily fluctuations in streamflow can be influenced by flow velocity. Internal waves in the Pacific Ocean are also studied for their impact on oceanic mixing and energy transport.

SourceAmerican Geophysical Union·JournalGeophysical Research Letters·DateJan 14, 2008

UBC astronomer produces first detailed map of dark matter in a supercluster

For the first time, astronomers have directly visualized the distribution of dark matter in a supercluster, allowing for the detection of irregular clumps and detailed shapes. This breakthrough study, led by UBC researcher Catherine Heymans, uses NASA's Hubble Space Telescope to map the Abell 901/902 supercluster.

SourceUniversity of British Columbia·JournalMonthly Notices of the Royal Astronomical Society·DateJan 10, 2008

Gazing up at the man in the star?

Researchers have captured an image of Altair, a hydrogen-burning star like our own sun, for the first time. The image was made possible by a novel system to clean up distortions from Earth's atmosphere and a multi-telescope system that combines information from small, distantly spaced telescopes.

AGU Journal highlights -- March 21, 2007

A burst of protons from the Sun in 1859 caused unprecedented ozone destruction, with energy released six times larger than a 1989 solar flare. Simultaneously, research suggests that ancient Farallon plate movement may have triggered massive earthquakes in the central US, shedding light on seismic hazards.

SourceAmerican Geophysical Union·JournalGeophysical Research Letters·DateMar 21, 2007

VLTI: Amber penetrates to the heart of the stars

The Very Large Telescope Interferometer (VLTI) equipped with AMBER has achieved unparalleled astronomical results, probing the formation stages of stars and detecting high-velocity jets in novae. The instrument's high angular resolution enables the observation of complex geometries and stellar winds.

SourceCNRS·DateMar 2, 2007