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STELLAR CHEMISTRY
Astronomers detect Freon-40 around infant stars, comet
by Brooks Hays
Washington (UPI) Oct 1, 2017


Hubble spots galaxy surrounded by stellar clusters
Washington (UPI) Oct 1, 2017 - In a new image captured by the Hubble Space Telescope, the giant elliptical galaxy NGC 4874 can be seen surrounded by stellar clusters.

Like a cosmic mobile, NGC 4874 is outfitted with a plethora of companions. No strings are needed to keep the mobile spinning in unison, as the giant galaxy's gravitation pull holds the attention of some 30,000 globular star clusters.

In the newly shared Hubble image, NGC 4874 is positioned on the right. It is the brightest orb in the image. The galaxy appears like a single star, enveloped by a hazy, halo-like sphere of light. The flying saucer-like clusters are scattered around the margins of the image.

Most of the smaller points of light in the distance are also stellar clusters, and the majority are under the gravitational spell of NGC 4874, which lies at the center of Coma Galaxy Cluster. The galactic cluster is situated 350 million light-years from Earth.

However, a recent astronomical survey proved at least a few of the dimmer points of light are ultra-compact dwarf galaxies. These mini galaxies are also under the influence of the giant galaxy's gravity. It's likely many of theses galaxies were significantly larger, but were robbed of gas and other star-forming materials by other larger galaxies in the Coma Cluster.

The space telescope used its Wide Field Channel of Hubble's Advanced Camera for Surveys to capture the image of NGC 4874.

With the help of a powerful telescope and space probe, astronomers have detected traces of methyl chloride, or Freon-40, surrounding infant stars and the comet 67P/Churyumov-Gerasimenko.

Freon-40, also known as chloromethane, belongs to a class of molecules called organohalogens. The radio telescopes at the ALMA observatory in Chile are the first to detect an organohalogen in interstellar space. The compound was found within several young star clusters located 400 light-years away.

Analysis of new data collected by the ROSINA instrument on ESA's Rosetta probe also revealed the presence of methyl chloride on comet 67P, the comet upon which ESA's Philae lander crashed.

"ROSINA was able to capture some of the molecules around the comet, separate them by mass, and count them with an exquisite precision," Kathrin Altwegg, an astronomer at the University of Bern, Switzerland, said in a news release. "This highly sensitive instrument enabled us to detect a host of chemicals around the comet, including the one also discovered by ALMA far from our solar system."

Most organohalogens consist of halogens, like chlorine and fluorine, that have formed covalent bonds with carbon. The compounds can be created synthetically to make plastics, drugs, dyes and other products. They're also formed naturally by a variety of biological processes.

Until recently, scientists held out hope that the discovery of methyl chloride and other organohalogens on exoplanets might signal the presence of life. But the latest discovery -- detailed this week in the journal Nature Astronomy -- suggests the compound forms naturally in interstellar clouds.

Scientists still believe organohalogens are important precursors to the organic compounds essential to the formation of life, but were surprised to find the compounds in such great abundance inside faraway stellar nurseries.

"We simply didn't predict its formation and were surprised to find it in such significant concentrations," said Edith Fayolle, a researcher with the Harvard-Smithsonian Center for Astrophysics in Cambridge, Mass. "It's clear now that these molecules form readily in stellar nurseries, providing insights into the chemical evolution of planetary systems, including our own."

Researchers were also surprised to find similar isotopic ratios among the methyl chloride concentrations detected near the stellar clusters and on comet 67P. The discovery suggests comets can inherit the chemical signatures of stellar clouds in young star systems and deliver those compounds to young planets.

STELLAR CHEMISTRY
Oxygen-deficient dwarf galaxy hints at makings of early universe
Charlottesville VA (SPX) Sep 26, 2017
A recently discovered dwarf galaxy in the constellation Lynx may serve well as a proxy for better understanding the developing chemistry of the early universe, according to a research team that includes University of Virginia astronomers. Their new finding, published in the journal Monthly Notices of the Royal Astronomical Society, shows that the oxygen level in the little galaxy is the lo ... read more

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Stellar Chemistry, The Universe And All Within It


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