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Bright streaks created by meteors radiate from a point in the sky above the dish of a radio telescope.

Gemini meteor shower, by Hao Yin, China

image
Created for the OAE

Caption: Third place in the 2021 IAU OAE Astrophotography Contest, category Meteor showers. As the Earth travels around the Sun, it may cross the path of debris left behind by a comet or, more rarely, by an asteroid. These debris enter the atmosphere at high speed, producing beautiful tracks as they burn in the sky due to friction with the atmosphere. The image captures the Geminid meteor shower, named because the radiant point is located on the sky in the constellation Gemini. The particles composing the meteor shower travel at similar speed and in parallel trajectories, which causes a perspective effect like if the stream radiates from one single point in the sky, which is known as the radiant point. This image, taken in December 2020 in China, clearly shows this perspective. This is a very prolific shower, in such a way that over one hundred meteorites could be seen per hour in recent appearances. This meteor shower is one of the few associated not with a comet, but with an asteroid – 3200 Phaeton, which might be a comet that lost all its volatile material. This image shows the large number of meteors that can be observed in this shower, which always happens in December every year. The image also shows one of the most prominent constellations in the night sky, Orion, easily seen by the three stars in a diagonal making up Orion’s Belt, and the red-orange star Betelgeuse. Right above the dish is a bright point and that is the Sirius, the brightest star in the night sky and part of the constellation Canis Major. The fuzzy bluish smudge at around 2 ‘o’ clock is the Pleiades star cluster.
Credit: Hao Yin/IAU OAE

Glossary Terms: Shooting Star
Categories: Naked Eye Astronomy

License: Creative Commons Attribution 4.0 International (CC BY 4.0) Creative Commons Attribution 4.0 International (CC BY 4.0) icons

This file on Zenodo ( image 9.78 MB)


A starry sky is reflected in a lake in a valley. The streak of a meteor goes from the top right to the middle of the image

The Geminid Fireball

image
Created for the OAE

Caption: Honorable mention in the 2023 IAU OAE Astrophotography Contest, category of Still images taken exclusively with smartphones/mobile devices. Captured with a smartphone on 13 December 2022, a Geminid meteor illuminated the sky above Blue Moon Valley in Yunnan, China, casting a breathtaking display against the serene backdrop of the Jade Dragon Snow Mountain. Renowned for their dazzling brightness and vivid hues, the Geminids are among the most vibrant meteor showers, originating from the asteroid 3200 Phaethon. Each year, as our planet traverses Phaethon’s debris trail, fragments of dust and rock vaporise in the atmosphere, creating the stunning phenomenon of the Geminid meteor shower. In this stunning night sky image, the twin stars of Gemini (Castor and Pollux) are obscured by the silhouetted trees on the left. Mirrored in the calm waters are the stars that make up the constellation of Orion, which can be seen rising towards the bottom-centre of the image, while the radiant Mars retains its brilliance as the foremost celestial beacon in the scene, all before the moonrise takes over.
Credit: Jianfeng Dai/IAU OAE (CC BY 4.0)

Glossary Terms: Gemini , Shooting Star
Categories: Naked Eye Astronomy , Solar System
Tags: astrophotography

License: Creative Commons Attribution 4.0 International (CC BY 4.0) Creative Commons Attribution 4.0 International (CC BY 4.0) icons

This file on Zenodo ( image 15.06 MB)


The nearby red supergiant Betelgeuse, seen as orange blob showing a non-symmetric shape with a bright spot to the upper left

The red supergiant Betelgeuse

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Caption: The image shows Betelgeuse, a red supergiant in the constellation Orion, observed by the Atacama Large Millimeter/submillimeter Array (ALMA). ALMA consists of many antennae spread across a plain in Northern Chile. The observations from all of these receivers is synthesised together by a central computer to form an image. The wide distances between the antennae mean that is can resolve very fine details. Most stars we observe are just seen as points of light, but Betelgeuse is so large (with a radius about 1,400 times larger than the Sun) and is sufficiently nearby that it is one of the few stars to have been resolved to show it as an extended object. Betelgeuse is a massive star, more than 14 times the mass of the Sun and is relatively young for a star (less than 14 million years old). However, its high mass led to it having a very hot core which burned through its hydrogen fuel quickly. It has since evolved through many stages and now appears as a red supergiant, it's final stage before exploding as a supernova. When such an explosion will happen is not known for certain, but it could be in around 100,000 years. Such an explosion would be visible from Earth, even during the day.
Credit: ALMA (ESO/NAOJ/NRAO)/E. O’Gorman/P. Kervella
Credit Link

Glossary Terms: Giant Star , Red Giant , Red Supergiant , Supergiant Star , M-type Star
Categories: Stars

License: Creative Commons Attribution 4.0 International (CC BY 4.0) Creative Commons Attribution 4.0 International (CC BY 4.0) icons

File ( image 4.86 MB)


The Horsehead Nebula is a horse-shaped silhouette, surrounded by glowing gas and scattered stars.

The Horsehead Nebula

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Caption: This image shows the Horsehead Nebula, located at a distance of about 1,300 light-years from Earth in the Orion constellation, one of the most iconic examples of a dark nebula. A dark nebula is a dense cloud of interstellar dust and cold gas that absorbs and scatters visible light, preventing background stars and glowing gas from reaching our eyes. This false-color image combines data captured through multiple narrowband filters, each isolating light from different elements in the nebula. The dark, horse-shaped silhouette appears sharply outlined against the luminous nebula behind it, where energetic radiation from nearby young stars causes the gas to glow. The uneven distribution of visible stars in this image is not random: regions rich in dust in the lower part of this image appear almost empty, while clearer areas reveal many background stars. The dust acts like a cosmic curtain, hiding stars that lie behind it while allowing stars in front of the cloud to remain visible. Studying such regions helps astronomers understand how nebulae serve as environments where new stars can form.
Credit: T.A.Rector (NOIRLab/NSF/AURA) and Hubble Heritage Team (STScI/AURA/NASA)
Credit Link

Glossary Terms: Dark Nebula , Dust , Nebula , Space

License: Creative Commons Attribution 4.0 International (CC BY 4.0) Creative Commons Attribution 4.0 International (CC BY 4.0) icons

File ( image 23.89 MB)


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