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Galaxy Cluster

Galaxy clusters are the most massive gravitationally bound structures in the Universe, containing hundreds to thousands of galaxies, vast amounts of hot gas, and a dominant component of dark matter. Typical masses range from 10¹⁴ to 10¹⁵ M☉ (solar masses), and sizes span several million light‑years.

These clusters form through hierarchical growth: smaller galaxy groups merge over time to create larger clusters. They are the primary building blocks of the cosmic web and serve as anchors for superclusters.

Most of a cluster’s mass resides in dark matter, inferred from galaxy motions and gravitational lensing. The intracluster medium (ICM) is made of hot plasma at tens of millions of Kelvin, emitting X‑rays observable by telescopes like Chandra and XMM‑Newton.

Galaxy clusters reveal fundamental physics. Fritz Zwicky first inferred dark matter in the 1930s by noting galaxies moved too quickly to be held by visible mass. Detailed X‑ray and lensing studies confirm that visible galaxies make up only ~1%, while ICM is ~9% and dark matter comprises ~90% of cluster mass.

Clusters are cosmological tools. Measurements of their number, mass distribution, and growth trace the nature of dark energy and the evolution of large-scale structure.

They also act as gravitational lenses: their mass bends light from distant galaxies, magnifying and distorting background sources—used to study high-redshift galaxies and map mass distribution.

Galaxy clusters include familiar nearby examples like the Virgo Cluster, Coma Cluster, and the Perseus Cluster. They also host extreme systems such as the Bullet Cluster—where colliding subclusters provide compelling evidence for dark matter—and distant massive clusters located over 10 billion light‑years away.

Modern observatories like Hubble, Chandra, and JWST continue to probe cluster dynamics, star formation, black hole growth, and dark matter profiles within these colossal systems.

APODs including "Galaxy Cluster"

Fortuitous Flash Candidate for the Farthest Star Yet Seen

11 April 2018

Fortuitous Flash Candidate for the Farthest Star Yet Seen
Image Credit: NASA Astronomy Picture of the Day

Was this flash the farthest star yet seen? An unexpected flash of light noticed fortuitously on Hubble Space Telescope images may prove to be not only an unusual gravitational lensing event but also an image of a normal star 100 times farther away than any star previously imaged individually. The featured image shows the galaxy cluster on the left complete with many yellowish galaxies, while on the right is an expanded square where a source appeared in 2016 that was not evident in 2011. The spectrum and variability of this source are strangely unlike a supernova, but rather appear more consistent with a normal blue supergiant star magnified by about a factor of 2000 by a confluence of aligned gravitational lenses. Dubbed Icarus, the source is in a galaxy well behind the galaxy cluster and far across the universe -- at redshift 1.5. If the lens interpretation is correct and Icarus is not an exploding star, further observations of it and other similarly magnified stars could give information about the stellar and dark matter content in the galaxy cluster and the universe. Open Science: Browse 1,600+ codes in the Astrophysics Source Code Library