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Extremely massive galaxy proto-supercluster smashes distance record

Extremely massive galaxy proto-supercluster smashes distance record

phys.org 09.09.2026 00:00 5 views
An international team of astronomers has discovered the most distant progenitor to a galaxy supercluster ever. The discovery supports existing theories of how galaxy clusters evolve and reveals how they are connected to

This article has been reviewed according to Science X's editorial process and policies. Editors have highlighted the following attributes while ensuring the content's credibility: An international team of astronomers has discovered the most distant progenitor to a galaxy supercluster ever. The discovery supports existing theories of how galaxy clusters evolve and reveals how they are connected to the larger cosmic web.

The study relies largely on data from the ODIN survey, conducted with the U.S. Department of Energy-fabricated Dark Energy Camera on the U.S. National Science Foundation Víctor M.

Blanco 4-meter Telescope in Chile. Galaxy clusters are the most massive gravitationally bound structures in the universe. These colossal groupings of hundreds to thousands of galaxies span millions of light-years.

They are held together by large concentrations of dark matter, which serves as the building block for the larger structure of the universe. Clusters that scientists observe relatively near to us in space and time are mature structures that evolved from what are known as 'protoclusters." These protoclusters are enormous, loosely bound collections of galaxies that are in the process of merging but have yet to settle into a stable cluster. By studying very distant protoclusters that formed when the universe was relatively young, scientists can understand how modern galaxy clusters grew and evolved over time.

With this goal, an international team of scientists led by Vandana Ramakrishnan, a graduate student at Purdue University at the time of the study, looked billions of years back in time to search for these ancient galaxy cluster progenitors. The team presents its findings in a paper appearing in The Astrophysical Journal. "With this project, we're hoping to understand the growth of massive structures in the universe and how they influence the evolution of galaxies within them," says Ramakrishnan.

"We also hope to get a better sense of how these protoclusters are connected to the larger cosmic web." Their study used data from the One-hundred-deg2 DECam Imaging in Narrowbands (ODIN) survey. This survey is conducted with the DOE-fabricated Dark Energy Camera (DECam), mounted on the NSF Víctor M. Blanco 4-meter Telescope at Cerro Tololo Inter-American Observatory (CTIO) in Chile, a program of NSF NOIRLab.

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