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GALEX reveals the largest-known spiral galaxy

Astronomers have crowned spiral galaxy NGC 6872 the largest-known spiral based on data that shows it spans more than 522,000 light-years.
By NASA Headquarters, Washington, D.C., NASA's Goddard Space Flight Center, Greenbelt, Maryland Published: January 11, 2013
NGC-6872
This composite of the giant barred spiral galaxy NGC 6872 combines visible light images from the European Southern Observatory's Very Large Telescope with far-ultraviolet data from NASA's GALEX, and 3.6-micron infrared data acquired by NASA's Spitzer Space Telescope. A previously unsuspected tidal dwarf galaxy candidate (circled) appears only in the ultraviolet, indicating the presence of many hot young stars. IC 4970, the small disk galaxy interacting with NGC 6872, is located above the spiral's central region. The spiral is 522,000 light-years across from the tip of one outstretched arm to the tip of the other, which makes it about 5 times the size of our home galaxy, the Milky Way. Images of lower resolution from the Digital Sky Survey were used to fill in marginal areas not covered by the other data. // Credit: NASA's Goddard Space Flight Center/ESO/JPL-Caltech/DSS
The spectacular barred spiral galaxy NGC 6872 has ranked among the biggest stellar systems for decades. Now a team of astronomers from the United States, Chile, and Brazil has crowned it the largest-known spiral based on archival data from NASA's Galaxy Evolution Explorer (GALEX) mission.

Measuring tip-to-tip across, its two outsized spiral arms, NGC 6872 spans more than 522,000 light-years, making it more than five times the size of our Milky Way Galaxy.

"Without GALEX's ability to detect the ultraviolet light of the youngest, hottest stars, we would never have recognized the full extent of this intriguing system," said Rafael Eufrasio from NASA's Goddard Space Flight Center in Greenbelt, Maryland.

The galaxy's unusual size and appearance stem from its interaction with a much smaller disk galaxy named IC 4970, which has only about one-fifth the mass of NGC 6872. The odd couple is located 212 million light-years from Earth in the southern constellation Pavo.

Astronomers think large galaxies, including our own, grew through mergers and acquisitions — assembling over billions of years by absorbing numerous smaller systems.

Intriguingly, the gravitational interaction of NGC 6872 and IC 4970 may have done the opposite, spawning what may develop into a new small galaxy.

"The northeastern arm of NGC 6872 is the most disturbed and is rippling with star formation, but at its far end, visible only in the ultraviolet, is an object that appears to be a tidal dwarf galaxy similar to those seen in other interacting systems," said Duilia de Mello from Catholic University in Washington, D.C.

The tidal dwarf candidate is brighter in the ultraviolet than other regions of the galaxy, a sign that it bears a rich supply of hot young stars less than 200 million years old.

The researchers studied the galaxy across the spectrum using archival data from the European Southern Observatory's (ESO) Very Large Telescope (VLT), the Two Micron All Sky Survey, and NASA's Spitzer Space Telescope, as well as GALEX.

By analyzing the distribution of energy by wavelength, the team uncovered a distinct pattern of stellar age along the galaxy's two prominent spiral arms. The youngest stars appear in the far end of the northwestern arm, within the tidal dwarf candidate, and stellar ages skew progressively older toward the galaxy's center.

The southwestern arm displays the same pattern, which is likely connected to waves of star formation triggered by the galactic encounter.

A 2007 study by Cathy Horellou of Onsala Space Observatory in Sweden and Baerbel Koribalski of the Australia National Telescope Facility developed computer simulations of the collision that reproduced the overall appearance of the system as we see it today. According to the closest match, IC 4970 made its closest approach about 130 million years ago and followed a path that took it nearly along the plane of the spiral's disk in the same direction it rotates. The current study is consistent with this picture.

As in all barred spirals, NGC 6872 contains a stellar bar component that transitions between the spiral arms and the galaxy's central regions. Measuring about 26,000 light-years in radius, or about twice the average length found in nearby barred spirals, it is a bar that befits a giant galaxy.

The team found no sign of recent star formation along the bar, which indicates it formed at least a few billion years ago. Its aged stars provide a fossil record of the galaxy's stellar population before the encounter with IC 4970 stirred things up.

"Understanding the structure and dynamics of nearby interacting systems like this one brings us a step closer to placing these events into their proper cosmological context, paving the way to decoding what we find in younger, more distant systems," said Eli Dwek from Goddard.

The study also included Fernanda Urrutia-Viscarra and Claudia Mendes de Oliveira of the University of Sao Paulo in Brazil and Dimitri Gadotti at the European Southern Observatory in Santiago, Chile.

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4 stars
STEPHEN ARMSTRONG from CALIFORNIA said:
Didn't GALEX determine a similar mass vs. visible size discrepancy in M83? Many issues back, I distinctly remember M83 being measured by GALEX at 300,000 LY across, if one looks at the UV sources as well as visible sources in the system. But, OF COURSE, our galaxy will measure out to 500,000 LY (in time). In fact, it may well be that there is continuous, luminous matter between galaxies, simply undetected because of its dimness.
5 stars
BILL SIMPSON from LOUISIANA said:
Looking at that interaction makes me wonder whether the big rip will cease all galaxy mergers at the same instant everywhere. I would guess not, because distance and density of the interacting masses may play some part. Then again, we would probably need to establish the timing of the rip far more precisely than we understand now, in order to even make an educated guess at the answer. Once it gets going, it might really get going and overcome gravity in a very short time.
5 stars
RANDALL DEBOW from FLORIDA said:
any one ever wonder where space stops and what is on the other side like do you just hit a wall and if so what happens if you go through the wall also if the big bang supposedly created space where was the material at that exploded maybe it was in the place that exists on the other side of the wall
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