Hubble Reveals a Giant Superbubble in the Large Magellanic Cloud

Soumyadeep Mukherjee

Soumyadeep Mukherjee is an award-winning astrophotographer from India. He has a doctorate degree in Linguistics. His work extends to the sub-genres of nightscape, deep sky, solar, lunar and optical phenomenon photography. He is also a photography educator and has conducted numerous workshops. His works have appeared in over 40 books & magazines including Astronomy, BBC Sky at Night, Sky & Telescope among others, and in various websites including National Geographic, NASA, Forbes. He was the first Indian to win “Astronomy Photographer of the Year” award in a major category.

Hubble Space Telescope captures a superbubble N44 cover

It seems like Hubble is not taking even a single day off! After we just came across its brilliant image of Saturn’s south pole, the Hubble Space Telescope has photographed one of the most distinctive structures inside the Large Magellanic Cloud. The new image shows N44, a large emission nebula in the constellation Dorado, with a huge cavity cutting through its center. The cavity measures about 210 by 140 light-years and is surrounded by glowing gas, dark dust, and dense fields of stars.

The new Hubble image contains bright emission regions, dark dust lanes, dense groups of stars, and several smaller structures within the wider N44 complex. Hubble’s resolution also allows individual stars to remain visible across the nebula, giving the image considerable detail even when viewed at a much smaller scale.

The “superbubble” in N44

The large cavity sits within a much more complicated field of gas and stars. Its edges are particularly easy to follow because the material around the cavity is denser and brighter than the interior. The contrast makes the superbubble stand out against the surrounding nebula.

The cavity itself is not an empty space. Stars are scattered across it, including members of the central stellar population that helped create the structure. Their winds pushed surrounding gas outward, while supernova explosions added further energy to the expanding region. The gas that remained around the cavity became compressed into a shell.

Hubble's new image of N44. Credit: NASA, ESA/Hubble, D. Gouliermis
Hubble’s new image of N44. Credit: NASA, ESA/Hubble, D. Gouliermis

The structure has appeared in earlier Hubble images, although its dimensions and interpretation have been presented somewhat differently over time. A Hubble image from 2021 described the cavity as about 250 light-years wide and said its origin was still uncertain.

The earlier report considered stellar winds and expanding shells from older supernovae as possible explanations. The newer 2026 image describes the superbubble as the result of both powerful stellar winds and supernovae.

Hubble Space Telescope photographed the same region back in 2021. Credit: NASA, ESA, V. Ksoll and D. Gouliermis (Universität Heidelberg), et al.; Processing: Gladys Kober (NASA/Catholic University of America)
Hubble Space Telescope photographed the same region back in 2021. Credit: NASA, ESA, V. Ksoll and D. Gouliermis (Universität Heidelberg), et al.; Processing: Gladys Kober (NASA/Catholic University of America)

The surrounding gas

Moving away from the central cavity makes the image increasingly busy. Glowing gas fills large sections of the field, while darker dust cuts across some of the brighter regions. Thousands of stars are scattered through the scene, with some standing out clearly against the nebula and others blending into the dense background.

The gas glows because radiation from massive stars energizes it. This process produces the emission seen across N44 and gives the nebula much of its color and contrast. The shell around the superbubble is forming new stars.

A smaller bubble near the upper right

The main superbubble is so large that it can be easy to overlook another bubble in the same frame. Near the upper-right portion of the image is N44F, a much smaller interstellar bubble created by the stellar wind of a single hot, massive star.

A close-up of N44F from Hubble's new image of the region. Credit: NASA, ESA/Hubble, D. Gouliermis
A close-up of N44F from Hubble’s new image of the region. Credit: NASA, ESA/Hubble, D. Gouliermis

Hubble previously photographed N44F in detail. Those observations showed the star’s powerful wind interacting with the surrounding gas and dust. The interaction has shaped the bubble and produced columns of dusty material along its interior wall. NASA’s earlier observations measured those columns at roughly 4 to 8 light-years in height.

Hubble's image of N44F from 2004. Credit: NASA, ESA, Y. Nazé (University of Liège, Belgium) and Y.-H. Chu (University of Illinois, Urbana)
Hubble’s image of N44F from 2004. Credit: NASAESA, Y. Nazé (University of Liège, Belgium) and Y.-H. Chu (University of Illinois, Urbana)

N44F provides a good scale comparison within the new image. The smaller bubble is produced by one star, while the enormous cavity dominating the wider scene is associated with the combined effects of massive stars and supernovae. Both structures appear within the same star-forming complex.

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Soumyadeep Mukherjee

Soumyadeep Mukherjee

Soumyadeep Mukherjee is an award-winning astrophotographer from India. He has a doctorate degree in Linguistics. His work extends to the sub-genres of nightscape, deep sky, solar, lunar and optical phenomenon photography. He is also a photography educator and has conducted numerous workshops. His works have appeared in over 40 books & magazines including Astronomy, BBC Sky at Night, Sky & Telescope among others, and in various websites including National Geographic, NASA, Forbes. He was the first Indian to win “Astronomy Photographer of the Year” award in a major category.

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