Showing posts with label NGC 2005. Show all posts
Showing posts with label NGC 2005. Show all posts

Tuesday, June 11, 2024

An ancient witness

A globular cluster, appearing as a highly dense and numerous collection of shining stars. Some appear a bit larger and brighter than others, with the brightest having cross-shaped spikes around them. They are scattered mostly uniformly, but in the centre they crowd together more and more densely, and merge into a strong glow at the cluster’s core.Credit: ESA/Hubble & NASA, F. Niederhofer, L. Girardi

The globular cluster NGC 2005, featured in this Hubble Picture of the Week, is not unusual in and of itself; but it is a peculiarity in relation to its surroundings. NGC 2005 is located about 750 light-years from the heart of the Large Magellanic Cloud (LMC), which is the Milky Way’s largest satellite galaxy and which itself lies about 162 000 light-years from Earth. Globular clusters are densely-packed clusters that can constitute tens of thousands or millions of stars. Their density means that they are tightly gravitationally bound and are therefore very stable. This stability contributes to their longevity: globular clusters can be billions of years old, and as such often comprise very old stars. Thus, studying globular clusters in space can be a little like studying fossils on Earth: where fossils give insights into the characteristics of ancient plants and animals, globular clusters illuminate the characteristics of ancient stars.

Current theories of galaxy evolution predict that galaxies merge with one another. It is widely thought that the relatively large galaxies that we observe in the modern Universe were formed via the merging of smaller galaxies. If this is correct, then astronomers would expect to see evidence that the most ancient stars in nearby galaxies originated in different galactic environments. As globular clusters are known to contain ancient stars, and because of their stability, they are an excellent laboratory to test this hypothesis.

NGC 2005 is such a globular cluster, and its very existence has provided evidence to support the theory of galaxy evolution via mergers. Indeed, the stars in NGC 2005 have a chemical composition that is distinct from the stars in the LMC around it. This suggests that the LMC underwent a merger with another galaxy somewhere in its history. That other galaxy has long-since merged and otherwise dispersed, but NGC 2005 remains behind as an ancient witness to the long-past merger.



Tuesday, October 19, 2021

Dwarf galaxy catches globular cluster


Composite image of NGC 2005 (left) and the Large Magellanic Cloud (right). The chemical composition of the stars in the globular cluster NGC 2005 differs from other stars in the Large Magellanic Cloud. It is the first evidence of merging dwarf galaxies outside our Milky Way. (c) HLA/Fabian RR/ESO/VMC Survey/Astronomie.nl [CC BY-SA 3.0]

Astronomers already knew that our own Milky Way grew by taking in smaller galaxies. But now a team of Italian-Dutch researchers have shown that a small galaxy neighbouring the Milky Way has in turn absorbed an even smaller galaxy from its vicinity. The researchers will publish their findings on Monday in the journal Nature Astronomy.

According to the prevailing theory, large galaxies such as our Milky Way were formed by mergers with smaller galaxies. In recent years, evidence for this has indeed been found for our Milky Way thanks to the Gaia satellite. An Italian-Dutch team of researchers wanted to prove the hypothesis that small galaxies are in turn made up of even smaller ones.

Globular clusters

To test their hypothesis, the researchers studied the Large Magellanic Cloud, a neighbouring galaxy to our Milky Way. They focused in particular at globular clusters. Globular clusters are groups of thousands to millions of stars. The idea is that the core of such a globular cluster can hold out even after billions of years of pushing and pulling in a galaxy.

The researchers analysed the chemical composition of eleven globular clusters collected by the Very Large Telescope and the Magellan telescopes in Chile.

Of the eleven globular clusters studied in the Large Magellanic Cloud, one was found to have a distinctly different chemical composition. It is globular cluster NGC 2005. This cluster contains about 200,000 stars and is located 750 light years away from the centre of the Large Magellanic Cloud. Among other things, it contains less zinc, copper, silicon and calcium than the ten other clusters. 
 
Relic of earlier merger

Based on the chemical composition of NGC 2005, the researchers deduced that the cluster must be a relic of a small galaxy in which the stars formed rather slowly. Billions of years ago, this small galaxy would have merged with the then not so large Large Magellanic Cloud. Over time, most of the small galaxy was pulled apart and most of the stars were scattered, but the central globular cluster NGC 2005, remained.

Researcher Davide Massari, who works in Italy and at the University of Groningen, is delighted: "We are actually seeing a relic of an earlier merger. And we have now convincingly demonstrated for the first time that small galaxies neighboring our Milky Way have in turn built up from even smaller galaxies."

Scientific paper

A relic from a past merger event in the Large Magellanic Cloud. By: A. Mucciarelli, D. Massari, A. Minelli, D. Romano, M. Bellazzini, F.R. Ferraro, F. Matteucci, L. Origlia. In: Nature Astronomy. (preprint, pdf)