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Hubble images some of galaxy's dimmest stars

Astronomers use Hubble Space Telescope to image two mysterious star types, including tiny, slow-burning stars and ancient, giant white dwarfs. The research pushes limits of observatory's capabilities, gathering data that will help refine theories about low-mass stars and the universe's age.

SourceRice University·JournalScience·DateAug 17, 2006

The land of three rising suns

A team of astronomers has discovered a hot Jupiter planet in a triple star system, challenging conventional theories of planetary formation. The discovery suggests that it is possible for planets to form around the host star and then be captured by a binary system, explaining the unusual configuration of the HD 188753 system.

SourceNew Scientist·JournalThe New Scientist·DateNov 16, 2005

Neutron star discovered where black hole was expected

Astronomers find a dense whirling ball of neutrons in an extremely young star cluster, challenging the idea that nature can make black holes. The discovery shows massive stars may not collapse into black holes as predicted, but instead create neutron stars with a greater influence on future generations of stars.

SourceChandra X-ray Center·JournalThe Astrophysical Journal Letters·DateNov 2, 2005

NASA's Chandra reveals new star generation

Astronomers find massive stars forming close to super-massive black holes, challenging previous theories about their role in galaxy evolution. Researchers used Chandra X-ray Observatory data to study the Sagittarius A* (Sgr A*) star cluster near the Milky Way's central black hole.

SourceChandra X-ray Center·JournalMonthly Notices of the Royal Astronomical Society·DateOct 13, 2005

'Wonderful' star reveals its hot nature

The Chandra X-ray Observatory has observed an X-ray outburst from the highly evolved red giant star Mira A, revealing a bridge of hot matter streaming between it and its companion white dwarf. The detection provides insights into interactions between binary systems, including those with a collapsed star.

SourceChandra X-ray Center·JournalThe Astrophysical Journal Letters·DateApr 28, 2005

Signatures of the first stars

Researchers discovered two most chemically primitive stars, HE0107-5240 and HE1327-2326, offering insights into the universe's early stages. These unevolved dwarf stars have iron contents significantly lower than previously known stars, providing a glimpse into the elements produced during supernova explosions.

SourceSwedish Research Council·JournalNature·DateApr 15, 2005

Measurements at CERN help to re-evaluate the element of life

Researchers at CERN and European universities have re-evaluated the primary reaction creating carbon in stars, modifying the rate of this process. The findings suggest that the amount of carbon produced in the first stars was twice as fast as previously thought, with implications for element production in supernovae.

SourceCERN·JournalNature·DateJan 13, 2005

Magnetic stars

Researchers found stable ring-shaped magnetic field configurations in magnetic A-stars, White Dwarf stars, and neutron stars, supporting the 'fossil field' hypothesis. These fields can persist for hundreds of millions of years, surviving the star's life span.

SourceMax-Planck-Gesellschaft·JournalNature·DateOct 15, 2004

Revealing the beast within

Astronomers have discovered four massive stellar clusters with stars as massive as 120 solar masses in the Milky Way's W49 molecular cloud. This reveals the true sources of enormous energy powering a giant HII region, solving decades of speculation.

SourceESO·JournalThe Astrophysical Journal Letters·DateJul 21, 2003

The mystery of the disappearing planetary disks

Researchers Jeff Bary and David Weintraub propose that planetary disks may not dissipate as expected, but instead become invisible due to the planet-building process. They detected evidence of molecular hydrogen in three classical T Tauri stars with visible disks, suggesting a large but hard-to-detect disk in naked stars.

Energized 'heartbeats' may explain why galaxies are continually stirred up, UCSD researchers say

A team of UCSD researchers found that regular outbursts of ultraviolet radiation from massive stars may play a significant role in stirring up galaxies. The simulation study suggests that this radiation acts as an important regulation mechanism, inhibiting further star formation and regulating the galactic perturbations.

SourceUniversity of California - San Diego·JournalThe Astrophysical Journal Letters·DateOct 28, 2002

Discovery of three faint companions of bright stars

Astronomers at Penn State have discovered three faint dwarf stars orbiting nearby bright stars, marking a new era in imaging faint objects. The discovery uses an infrared camera with a specially shaped pupil mask, allowing for improved contrast and revealing the dim companions.

SourcePenn State·JournalThe Astrophysical Journal Letters·DateJun 12, 2002