Free Astronomy Magazine March-April 2024
33 MARCH-APRIL 2024 ASTRO PUBLISHING C ontrary to what you might think, galaxy colli- sions do not destroy stars. In fact, the rough- and-tumble dynamics trigger new genera- tions of stars, and presumably accompanying plan- ets. Now NASA’s Hubble Space Telescope has homed in on 12 interacting galaxies that have long, tad- pole-like tidal tails of gas, dust, and a plethora of stars. Hubble’s exquisite sharpness and sensitivity to ultraviolet light have uncovered 425 clusters of new- born stars along these tails, looking like strings of holiday lights. Each cluster contains as many as 1 million blue, newborn stars. Clusters in tidal tails have been known about for decades. When galaxies interact, gravitational tidal forces pull out long streamers of gas and dust. Two popular examples are the Antennae and Mice galax- ies with their long, narrow, finger-like projections. A team of astronomers used a combination of new observations and archival data to get ages and masses of tidal tail star clusters. They found that these clusters are very young — only 10 million years old. And they seem to be forming at the same rate along tails stretching for thousands of light-years. “It’s a surprise to see lots of the young objects in the tails. It tells us a lot about cluster formation effi- ciency,” said lead author Michael Rodruck of Ran- dolph-Macon College in Ashland, Virginia. “With tidal tails, you will build up new generations of stars that otherwise might not have existed.” The tails look like they are taking a galaxy’s spiral arm and stretching it out into space. The exterior part of the arm gets pulled like taffy from the grav- itational tug-of-war between a pair of interacting galaxies. Before the mergers, the galaxies were rich in dusty clouds of molecular hydrogen that simply may have remained inert. But the clouds got jostled and bumped into each other during the encounters. This compressed the hydrogen to the point where it precipitated a firestorm of star birth. The fate of these strung-out star clusters is uncer- tain. They may stay gravitationally intact and evolve into globular star clusters — like those that orbit outside the plane of our Milky Way galaxy. Or they may disperse to form a halo of stars around their host galaxy, or get cast off to become wandering in- tergalactic stars. This string-of-pearls star formation may have been more common in the early universe when galaxies collided with each other more frequently. These nearby galaxies observed by Hubble are a proxy for what happened long ago, and therefore are labo- ratories for looking into the distant past. ! G alaxy AM 1054-325 has been distorted into an S-shape from a normal pancake-like spiral shape by the gravi- tational pull of a neighboring galaxy, seen in this Hubble Space Telescope image. A consequence of this is that new- born clusters of stars form along a stretched-out tidal tail for thousands of light-years, resembling a string of pearls. They form when knots of gas gravitationally collapse to create about 1 million newborn stars per cluster. [NASA, ESA, STScI, Jayanne English (University of Manitoba)]
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