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Massive galaxy made almost entirely of dark matter
by Staff Writers
Kamuela HI (SPX) Aug 25, 2016


The mass of the galaxy is estimated to be a trillion times the mass of the Sun - very similar to the mass of our own Milky Way galaxy. However, only one hundredth of one percent of that is in the form of stars and "normal" matter; the other 99.99 percent is in the form of dark matter. The Milky Way has more than a hundred times more stars than Dragonfly 44.

Using the world's most powerful telescopes, an international team of astronomers has discovered a massive galaxy that consists almost entirely of dark matter. Using the W. M. Keck Observatory and the Gemini North telescope - both on Maunakea, Hawaii - the team found a galaxy whose mass is almost entirely dark matter. The findings are being published in The Astrophysical Journal Letters this week.

Even though it is relatively nearby, the galaxy, named Dragonfly 44, had been missed by astronomers for decades because it is very dim. It was discovered just last year when the Dragonfly Telephoto Array observed a region of the sky in the constellation Coma. Upon further scrutiny, the team realized the galaxy had to have more than meets the eye: it has so few stars that it quickly would be ripped apart unless something was holding it together.

To determine the amount of dark matter in Dragonfly 44, astronomers used the DEIMOS instrument installed on Keck II to measure the velocities of stars for 33.5 hours over a period of six nights so they could determine the galaxy's mass. The team then used the Gemini Multi-Object Spectrometer (GMOS) on the 8-meter Gemini North telescope on Maunakea in Hawaii to reveal a halo of spherical clusters of stars around the galaxy's core, similar to the halo that surrounds our Milky Way galaxy.

"Motions of the stars tell you how much matter there is, van Dokkum said. "They don't care what form the matter is, they just tell you that it's there. In the Dragonfly galaxy stars move very fast. So there was a huge discrepancy: using Keck Observatory, we found many times more mass indicated by the motions of the stars, than there is mass in the stars themselves."

The mass of the galaxy is estimated to be a trillion times the mass of the Sun - very similar to the mass of our own Milky Way galaxy. However, only one hundredth of one percent of that is in the form of stars and "normal" matter; the other 99.99 percent is in the form of dark matter. The Milky Way has more than a hundred times more stars than Dragonfly 44.

Finding a galaxy with the mass of the Milky Way that is almost entirely dark was unexpected. "We have no idea how galaxies like Dragonfly 44 could have formed," Roberto Abraham, a co-author of the study, said. "The Gemini data show that a relatively large fraction of the stars is in the form of very compact clusters, and that is probably an important clue. But at the moment we're just guessing."

"This has big implications for the study of dark matter," van Dokkum said. "It helps to have objects that are almost entirely made of dark matter so we don't get confused by stars and all the other things that galaxies have. The only such galaxies we had to study before were tiny. This finding opens up a whole new class of massive objects that we can study.

"Ultimately what we really want to learn is what dark matter is," van Dokkum said. "The race is on to find massive dark galaxies that are even closer to us than Dragonfly 44, so we can look for feeble signals that may reveal a dark matter particle."

"A High Stellar Velocity Dispersion and ~100 Globular Clusters for the Ultra Diffuse Galaxy Dragonfly 44," Pieter van Dokkum et al., 2016, Astrophysical Journal Letters


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Greenbelt MD (SPX) Aug 15, 2016
Dark matter, the mysterious substance that constitutes most of the material universe, remains as elusive as ever. Although experiments on the ground and in space have yet to find a trace of dark matter, the results are helping scientists rule out some of the many theoretical possibilities. Three studies published earlier this year, using six or more years of data from NASA's Fermi Gamma-ray Spac ... read more


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