WASHINGTON: Astronomers have detected an exoplanet’s visible-light spectrum directly for the first time ever, a milestone that could help bring many other alien worlds into clearer focus down the road.
The scientists used the HARPS instrument on the European Southern Observatory’s 3.6-meter telescope at the La Silla Observatory in Chile to study the spectrum of visible light reflected off the exoplanet 51 Pegasi b, which lies about 50 light-years from Earth in the constellation Pegasus.
51 Pegasi b, a “hot Jupiter” gas giant that orbits close to its parent star, was spotted in 1995, when it became the first alien world ever discovered around a sunlike star. (The first exoplanets of any type were found in 1992 around a superdense, rotating stellar corpse called a pulsar.
Researchers most often study exoplanet atmospheres by analyzing the starlight that passes through them when worlds cross their stars’ faces from Earth’s perspective. This method, known as transit spectroscopy, is restricted to use on systems in which the stars and planets align.
The new strategy used with 51 Pegasi b, on the other hand, does not depend on planetary transits and could thus find broader applicability, researchers said.
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