Edge Rewrite
// HTMLRewriter · presentation

This page was redesigned at the edge.

Cloudflare fetched the original article and streamed it through HTMLRewriter to apply an entirely new visual system without rebuilding the source page.

Jump to content

Arp 143

From Wikipedia, the free encyclopedia
(Redirected from Draft:Arp 143)

Arp 143
Hubble Space Telescope image of NGC 2444 and NGC 2445, members of Arp 143
Observation data (Epoch )
ConstellationLynx
Right ascension07h 46m 57s
Declination39° 00′ 51″
Brightest memberNGC 2445
Number of galaxies2
Redshift0.01295
Distance191 million light-years (59×10^6 pc)

Arp 143, also known as VV 117, is a pair of interacting galaxies, NGC 2444 and NGC 2445, found in the Lynx constellation.[1] It is one of the few ring galaxy systems in the Atlas of Peculiar Galaxies.[2] It is believed that NGC 2444 and NGC 2445 have passed through each other, causing an increase in star formation in NGC 2445.[1] Unlike NGC 2445, NGC 2444 is not experiencing any new star birth due to NGC 2444 having lost its gas long before the collision.[3]

Observations

[edit]

Arp 143 was discovered by French astronomer Édouard Stephan on 18 January 1877 using the 31-inch Foucault reflector telescope at the Marseille Observatory.[4]

Arp 143 is composed of NGC 2444 and NGC 2445.[1] The latter is a very distorted ring galaxy, taking a trapezoidal shape instead of a more circular one.[2] This is a result of gravity from NGC 2444 pulling on NGC 2445.[1] The cluster has complex radio emissions that may be caused by star formation or a black hole,[3] with the radio emissions being concentrated in the cores, a northwestern region of NGC 2445 extending to NGC 2444, and the southern and eastern parts of NGC 2445's ring.[2] The northwestern region of NGC 2445 also has a stronger-than-normal magnetic field compared to most spiral galaxies.[2] The stars of the ring are around 50–100 million years old.[5]

The ring of Arp 143 has a radius of 10 kiloparsecs (33,000 ly).[6] It is composed of stellar knots. The stellar ages within the ring gets lower the further out, which corresponds with a galactic collision.[6] The ring is not centered, indicating a non-symmetrical collision.[6]

NGC 2444 pulls on NGC 2445, creating a tidal tail.[1][6] The tail is approximately 240 kiloparsecs (780,000 ly) long.[7] The stream of stars that make up the tail are slowly being left behind as NGC 2445 continues to slowly pull away from NGC 2444.[3]

References

[edit]
  1. 1 2 3 4 5 "Arp 143". National Aeronautics and Space Administration. 22 February 2022. Retrieved 12 September 2026.
  2. 1 2 3 4 Nikiel-Wroczyński, Błażej; Jamrozy, Marak; Soida, Marian; Urbanik, Marek (14 August 2014). "Multiwavelength study of the radio emission from a tight galaxy pair Arp 143". Monthly Notices of the Royal Astronomical Society. 444 (2): 1729–1737. arXiv:1407.7369. doi:10.1093/mnras/stu1475.
  3. 1 2 3 information@eso.org. "Hubble Looks at a 'Space Triangle' Spawned by a Galaxy Collision". www.esahubble.org. Retrieved 17 September 2026.
  4. ↑ "Pair of Galaxies NGC 2444/5 | Deep⋆Sky Corner". www.deepskycorner.ch. Retrieved 17 September 2026.
  5. ↑ Gamillo, Elizabeth. "Hubble Space Telescope Captures Galaxies Caught in Triangular Tug-of-War". Smithsonian Magazine. Retrieved 15 September 2026.
  6. 1 2 3 4 Chow-Martínez, M; Robleto-Orús, A; Mayya, Y D; Torres-Papaqui, J P; Ortega-Minakata, R A; Castro-Hidalgo, D F; Caretta, C A; Trejo-Alonso, J J; Morales-Vargas, A; García-Benito, R; Jácamo-Delgado, H E; Gudiño, M (21 April 2026). "Integral field spectroscopy of collisional ring galaxies – I. Stellar population analysis". Monthly Notices of the Royal Astronomical Society. 547 (4) stag511. doi:10.1093/mnras/stag511. hdl:10261/432503. ISSN 0035-8711.
  7. ↑ "[21.03] Tidal Dwarf Galaxy Candidates in Arp 143's Plume". aasarchives.blob.core.windows.net. Retrieved 17 September 2026.