Galaxies are like cosmic gems, each with characteristics including size and shape that make them distinct. A new gallery released today from NASA’s Chandra X-ray Observatory and other telescopes displays a collection of galactic images that showcase this variety.
Astronomers put
galaxies into three main categories: spirals like our own Milky Way with arms
emanating from their cores, ellipticals that are older and likely the results
of mergers, and irregulars that can encompass a wide range of galactic
phenomena.
This gallery displays a collection of 16 galactic images from Chandra and other telescopes. Astronomers put galaxies into three main categories: spirals like our own Milky Way, ellipticals that are older and likely the results of mergers, and irregulars that can encompass a wide range of galactic phenomena. All types are represented in this collection. Each galactic image contains X-ray data from Chandra combined with data from telescopes such as NASA’s Webb, Hubble, IXPE, Swift, and NuSTAR, and others both in space and on the ground.
Credit: NASA/CXC/SAO
See full gallery: Galaxy Gallery: Galactic Gems Glisten in New Gallery From NASA's Chandra - NASA Science
Just as gems reveal the history of Earth through how they were forged over billions of years, these galactic gems are a way to study Earth’s place in our home galaxy of the Milky Way. By looking outward to other galaxies, we learn more about our own – including clues to its past and future.
There are 16 new images in this galactic gallery. Each one contains X-ray data from Chandra that has been collected across Chandra’s decades in space. This high-energy data has been combined with data from telescopes such as NASA’s James Webb and Hubble Space Telescopes, IXPE (Imaging X-ray Polarimetry Explorer), Neil Gehrels Swift Observatory, NuSTAR (Nuclear Spectroscopic Telescope Array), and others both on the ground and in space.
X-rays are
critical for the study of galaxies, revealing unique and important information
about these cosmic building blocks. For example, Chandra exposes gas that has
been superheated to millions of degrees by winds from massive stars, the
outflows from supermassive black holes, and the debris from exploded stars.
These are key sources of elements in our bodies, in the air we breathe, and the
planet we live on. Chandra also sees some of the hottest and most energetic
galactic phenomena in the universe, forming a more complete picture of how
galaxies live, interact, and evolve when combined with data from other types of
light and telescopes.
Spiral and
star-forming engines
Face-on spiral
galaxies like Messier 33 and NGC 3938 offer unobstructed views of places where
energetic pairs of stars and cosmic explosions live along spiral arms. Barred
spirals like NGC 1672 and NGC 1385 show how central bar-shaped collections of
stars, gas, and dust funnel fuel inward to ignite bursts of star formation. NGC
4725 reveals how star formation can be triggered by a previous collision with
another galaxy. Meanwhile, edge-on views of NGC 4631 (the Whale Galaxy) and the
starburst Messier 82 (the Cigar Galaxy) showcase giant halos and superwinds of
million-degree gas driven thousands of light-years into space by intense
explosions of stars, enriching surrounding intergalactic space with vital
elements.
Active galactic
nuclei, black hole outflows
Powerful,
growing black holes in the cores of their host galaxies, known as active
galactic nuclei, send energy outward in outbursts and jets that impact entire
galaxies. In Centaurus A, Chandra and IXPE data expose a high-energy particle
jet blasting tens of thousands of light-years into space from its central
engine. In Messier 106, jets from the supermassive black hole heat surrounding
gas to create spiral arms that are different from those typically found in
spiral galaxies. Meanwhile, the iconic Sombrero Galaxy (Messier 104) highlights
a supermassive black hole embedded in a colossal stellar bulge, where Chandra’s
X-rays map a diffuse halo of million-degree gas and hot stellar remnants
surrounding its sweeping dust lanes.
Collisions,
mergers, cosmic disruptions
The gallery also
showcases galaxies undergoing extreme gravitational transformations. A direct
impact in Arp 143 acts like a cosmic bullseye, creating an expanding ring
galaxy and triggering waves of star birth. Violent mergers, such as NGC 3256
and the dust-shrouded starburst II Zw 096, reveal the kind of chaotic galaxy
collisions that dominated the early universe and offer a preview of the Milky
Way’s distant future merger with nearby galaxy Andromeda. NGC 1569 acts as a
local laboratory for studying early universe starbursts, NGC 660 showcases a
rare "polar ring" galaxy where a ring of stars orbits over its poles,
and Messier 90 shows a spiral galaxy plowing through the Virgo Cluster, having
its star-forming gas violently stripped away.
NASA's Marshall
Space Flight Center manages the Chandra program. The Smithsonian Astrophysical
Observatory's Chandra X-ray Center controls science operations from Cambridge,
Massachusetts, and flight operations from Burlington, Massachusetts.
Author: Megan
Watzke
Read more from NASA’s Chandra X-ray Observatory: Chandra :: Photo Album :: Galaxy Gallery :: August 25, 2026
To learn more about Chandra, visit: Chandra X-ray Observatory - NASA Science
Source: Galactic Gems Glisten in New Gallery From NASA’s Chandra - NASA Science


No comments:
Post a Comment