University of Montreal detects an orbitless planet, shows that stars don’t have an iron grip (video)

University of Montreal successfully spots an orbitless planet, shows that stars don't have an iron grip

Astronomers have long theorized that there are many planets that have drifted away from their home stars, whether it's a too-loose gravitational pull during the planet's formation or a stellar tug-of-war. We've never had a reasonable chance of locating such a wanderer until today, however. The University of Montreal believes it has spotted CFBDSIR2149, an awkwardly-named gas giant four to seven times larger than Jupiter, floating by itself in the AB Doradus Moving Group of young stars. Scientists made the discovery first by pinpointing their target through infrared images from the Canada-France-Hawaii Telescope, and later using the Very Large Telescope to deduce that the object was both too small to be a star as well as hot and young enough (752F and under 120 million years old) to fit the behavior of a planet orphaned early into its existence. With CFBDSIR2149's nature largely locked down, the challenge now is learning just how common such lonely examples can be; when it's much easier to focus on the stars while hunting for planets, finding any more strays could prove to be a daunting task.

Continue reading University of Montreal detects an orbitless planet, shows that stars don't have an iron grip (video)

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University of Montreal detects an orbitless planet, shows that stars don't have an iron grip (video) originally appeared on Engadget on Wed, 14 Nov 2012 20:14:00 EDT. Please see our terms for use of feeds.

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Infrared telescope can pick out the atmosphere on distant planets, smell what the aliens are smelling

Infrared telescope can pick out the atmosphere on distant planets, smell what the aliens are smelling

Astronomers in Chile using the European Southern Observatory's Very Large Telescope are now able to analyze the atmosphere on faraway planet Tau Bootis b. Using CRIRES, a supercooled infrared spectrograph bolted to the 'scope, the team was able to judge the size of the exoplanet -- and for the first time, take a reading of the atmosphere while not in transit. Historically, the only time researchers have been able to conduct atmospheric analysis is during the transit of its nearby star, which imprints the qualities of the atmosphere onto the light. The team found that Tau Bootis b is around six times the size of Jupiter, but its air is so thick with Carbon Monoxide that we'll have to look elsewhere to plan that expedition to the stars.

Infrared telescope can pick out the atmosphere on distant planets, smell what the aliens are smelling originally appeared on Engadget on Thu, 28 Jun 2012 18:00:00 EDT. Please see our terms for use of feeds.

Permalink MSNBC  |  sourceESO  | Email this | Comments