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A 'river' of cosmic gas 1 trillion miles long sent planets in the Orion constellation into tilted orbits
The discovery could explain why astronomers keep finding exoplanet systems with misaligned orbits.
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A rare planet-forming disk around a young triple-star system in the Orion constellation has been tipped over by a river of gas over 1 trillion miles (1.6 trillion kilometers) long. The discovery, made at radio wavelengths with ALMA, the Atacama Large Millimeter/submillimeter Array in Chile, could explain why astronomers keep finding planets with orbits that are drastically misaligned with the rotational axes of their stars.
GW Orionis is a triple system consisting of three pre-main sequence stars, meaning that they are still forming and contracting and have not yet initiated fusion reactions of hydrogen in their core. The stars are located roughly 1,300 light-years away, in the Lambda Orionis star-forming molecular ring in the constellation of Orion, the Hunter. Finding a planet-forming disk of gas and dust encircling all three stars in a system is very rare, and finding a disk consisting of three rings with misaligned orbits is even stranger.
"Previous studies of GW Orionis revealed that the system's inner, middle and outer rings are misaligned, with each ring tilted at a different angle," said Maria Galloway-Sprietsma, a PhD student at the University of Florida who led the research, in a statement.
The outer ring, which is one of the largest ever seen around a young star, is the most noticeably misaligned. It had previously been thought that an unseen gas giant planet, having carved out a gap between the middle and outer ring, was perturbing the outer ring.
Now though, Galloway-Sprietsma and colleagues have discovered the hidden truth: an enormous finger of gas reaching in from the surrounding molecular cloud is disturbing the outer ring, and the exchange of angular momentum, or rotational energy, between the two is warping the ring and tipping it over.
The disk around GW Orionis is composed of three rings, beginning at radii of 4.1, 17.4 and 31.6 billion miles (6.7, 28 and 51 billion kilometers/44, 187 and 340 astronomical units) from the center of the tight triple system.
The streamer of gas tilting the system's outer ring was discovered through new ALMA observations. Such streamers are thought to be how stars grow, delivering mass onto nascent suns. The streamer is composed mostly of molecular hydrogen, but since molecular hydrogen is invisible at radio wavelengths, ALMA searched for molecules of carbon monoxide in the streamer instead.
The length of the streamer is astounding, stretching 0.2 light years (12,600 astronomical units, 1.9 trillion kilometers or 1.2 trillion miles).