Why is the center of the Milky Way filled with young stars but has very few old ones. According to the theory, the remnants of older, red giant stars are still there – they just aren’t bright enough to be detected with telescopes. The Georgia Tech computer simulations investigate the possibility that these red giants were dimmed after they were stripped of 10s of percent of their mass millions of years ago during repeated collisions with an accretion disk at the galactic center. The very existence of the young stars, seen in astronomical observations today, is an indication that such a gaseous accretion disk was present in the galactic center because the young stars are thought to have formed from it as recently as a few million years ago.
Astrophysicists created models of red giants similar to those that are supposedly missing from the galactic center – stars that are more than a billion years old and 10s of times larger in size than the Sun. They put them through a computerized version of a wind tunnel to simulate collisions with the gaseous disk that once occupied much of the space within .5 parsecs of the galactic center. They varied orbital velocities and the disk’s density to find the conditions required to cause significant damage to the red giant stars.
“Red giants could have lost a significant portion of their mass only if the disk was very massive and dense,” said Tamara Bogdanovic, the Georgia Tech assistant professor. “So dense, that gravity would have already fragmented the disk on its own, helping to form massive clumps that became the building blocks of a new generation of stars.” The simulations suggest each of the red giant stars orbited its way into and through the disk as many as dozens of times, sometimes taking as long as days to weeks to complete a single pass-through. Mass was stripped away with each collision as the star blistered the fragmenting disk’s surface~ a process 4 to 8 million years ago, the same age as the young stars seen in the center of the Milky Way today.
“We don’t know very much about the conditions that led to the most recent episode of star formation in the galactic center or whether this region of the galaxy could have contained so much gas,” Bogdanovic said. “If it did, we expect that it would presently house under-luminous red giants with smaller orbits, spinning more rapidly than expected. If such population of red giants is observed, among a small number that are still above the detection threshold, it would provide direct support for the star-disk collision hypothesis and allow us to learn more about the origins of the Milky Way.” http://www.news.gatech.edu/2016/06/07/computer-simulations-shed-light-milky-ways-missing-red-giants
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