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File:The peculiar galaxy NGC 3256 photographed by the James Webb Space Telescope.jpg

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English: The peculiar galaxy NGC 3256 dominates this image from the NASA/ESA/CSA James Webb Space Telescope. This Milky Way-sized galaxy lies about 120 million light-years away in the constellation Vela, and is a denizen of the Hydra-Centaurus Supercluster.

NGC 3256 may seem peaceful, a swirl of tightly entwined spiral arms set in a hazy cloud of light, but this image shows the aftermath of an ancient cosmic clash. This distorted galaxy is the wreckage of a head-on collision between two equally massive spiral galaxies which astronomers estimate to have met around 500 million years ago. The tumultuous past of NGC 3256 is captured in the long tendrils of shining dust and stars which extend outwards from the main body of the galaxy. These luminous tendrils are called tidal tails, and are studded with young stars which were formed as gas and dust from the two galaxies collided. The striking red wisps spread across the galaxy trace out lanes of dust. Excited by radiation from the galaxy's stars, small dust grains emit infrared light that is captured in astonishing detail by Webb's instruments.

If you were asked to picture a galaxy collision, you might picture stars careening into one another with catastrophically explosive results. In reality, the spaces between the stars in a galaxy are vast; when galaxies collide, their clouds of stars pass through one another and mingle like two clouds of smoke. The gas and dust in colliding galaxies does interact, however, and with spectacular results. The galactic collision that created NGC 3256 triggered a luminous burst of star formation that can be seen in the brightest portions of this image. These infant stars shine most brightly at infrared wavelengths, light which can penetrate through obscuring dust in the galaxy, and which makes the stars perfect subjects for Webb.

This observation is one of several which take a detailed look at the physics of star formation and black hole growth in nearby merging galaxies, hoping to transform astronomers' understanding of galactic evolution. Capturing a selection of luminous infrared galaxies like NGC 3256 will help the astronomical community to understand how Webb can unravel the complex histories of nearby star-forming galaxies.

This image contains data from Webb’s Near-InfraRed Camera and Mid-InfraRed Instrument, which — as the names suggest — capture NGC 3256 in stunning detail at infrared wavelengths. Previous observations of NGC 3256 with the NASA/ESA Hubble Space Telescope revealed this cosmic collision at visible wavelengths.

Image Description: A large, face-on spiral galaxy. The core is radiating very brightly. Streaks of dust glow intensely red, in the centre and across most of the galaxy. This gas is surrounded by a dark grey halo made of the galaxy’sstars. The halo stretches out into a tidal tail at the upper-left, and another at the bottom. Small stars and galaxies surround the spiral galaxy, on a black background.

Credit: ESA/Webb, NASA & CSA, L. Armus, A. Evans

Release date: 3 July 2023, 06:00

Image acquired on the 24th and 25th of December, 2022
Date
Source https://esawebb.org/images/potm2306a/
Author ESA/Webb, NASA & CSA, L. Armus, A. Evans

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Public domain This file is in the public domain in the United States because it was solely created by NASA. NASA copyright policy states that "NASA material is not protected by copyright unless noted". (See Template:PD-USGov, NASA copyright policy page or JPL Image Use Policy.)
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The peculiar galaxy NGC 3256 dominates this image from the NASA/ESA/CSA James Webb Space Telescope.

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current10:00, 3 July 2023Thumbnail for version as of 10:00, 3 July 20234,206 × 3,528 (4.42 MB)OptimusPrimeBot#Spacemedia - Upload of https://cdn.esawebb.org/archives/images/large/potm2306a.jpg via Commons:Spacemedia
04:40, 3 July 2023Thumbnail for version as of 04:40, 3 July 20233,528 × 4,206 (4.41 MB)PhantomdjUploaded a work by ESA/Webb, NASA & CSA, L. Armus, A. Evans from https://esawebb.org/images/potm2306a/ with UploadWizard

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