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Tabby's Star

space Maturity 9-11

A star shines in the sky. This star gets dim. It goes dark and light. This happens for no clear reason. We use big tools to see it. It is very cool! Can you find it?

37 words

A strange star shines in the sky. This star is named Tabby's Star. It acts very weird. Sometimes it gets much dimmer. It can lose a lot of light.

PIA20053-PossibleCometSwarmAroundKIC8462852-ArtistConcept-20151124.jpg
PIA20053-PossibleCometSwarmAroundKIC8462852-ArtistConcept-20151124.jpg
One idea is a swarm of dust. This dust blocks the light. It might come from a broken moon. Other people thought it was something else. Scientists still study this odd star. It is a big mystery!

68 words

Tabby's Star is a very strange star. It sits in the Cygnus constellation. This star is part of a binary system. This means it has a companion star. That companion is a small red dwarf.

Most stars shine with a steady light. But Tabby's Star is different. It has unusual light fluctuations. This means its brightness changes in odd ways. Sometimes the star dims by as much as 22%.

PIA20053-PossibleCometSwarmAroundKIC8462852-ArtistConcept-20151124.jpg
PIA20053-PossibleCometSwarmAroundKIC8462852-ArtistConcept-20151124.jpg
A planet the size of Jupiter would only block 1% of the light. Because the dips are so big, something much larger must be in the way.

Scientists have many ideas about why this happens. Some thought it was a megastructure. A megastructure is a giant object made by aliens. Most experts think this is not the case. In 2019, researchers suggested a new idea. They think bits of a broken moon might be the cause. These fragments could be orbiting the star. They block the light as they move.

PIA22081-KIC8462852-TabbysStar-UnevenDustRing-Illustration-20171004.png
PIA22081-KIC8462852-TabbysStar-UnevenDustRing-Illustration-20171004.png
Astronomers continue to watch this star to learn more.

171 words

Tabby's Star is a very unusual star located in the Cygnus constellation. This star is part of a binary system, which means it has a companion. That companion is a small red dwarf star. The main star is an F-type main-sequence star. It is roughly halfway between the stars Deneb and Delta Cygni. You cannot see it with your naked eye. You would need a telescope and a dark sky to find it. It is a subject of great interest because its light is not steady.

Most stars shine with a constant brightness. However, Tabby's Star has unusual light fluctuations. This means its brightness changes in strange ways. In 2011, the star dimmed by up to 15%.

PIA22081-KIC8462852-TabbysStar-UnevenDustRing-Illustration-20171004.png
PIA22081-KIC8462852-TabbysStar-UnevenDustRing-Illustration-20171004.png
Two years later, it dimmed by as much as 22%. A planet the size of Jupiter only blocks 1% of a star's light. These dips are much larger than a planet could cause. Something much bigger is blocking the light. This makes the star's light curve very irregular and hard to predict.

Astronomer Tabetha S. Boyajian led the team that studied these dips. She published her findings in a scientific paper in 2015. Because of her work, people call it Boyajian's Star. Some people also call it the WTF Star. This nickname comes from the paper's subtitle, "where's the flux?". Flux is just a word for the light coming from the star. The star was first seen in catalogs as far back as 1890. It was later found by the Kepler space telescope.

Scientists have many ideas about why the light dips.

PIA20053-PossibleCometSwarmAroundKIC8462852-ArtistConcept-20151124.jpg
PIA20053-PossibleCometSwarmAroundKIC8462852-ArtistConcept-20151124.jpg
Some thought an alien megastructure might be orbiting the star. A megastructure is a huge object built by a civilization. Most evidence makes scientists doubt this idea. In 2019, researchers suggested a different cause. They thought fragments from a broken exomoon might be the reason. These pieces of a moon could be orbiting the star. They would block the light as they move through space.

Other ideas include clouds of interstellar dust or many large planets.

PIA20053-PossibleCometSwarmAroundKIC8462852-ArtistConcept-20151124.jpg
PIA20053-PossibleCometSwarmAroundKIC8462852-ArtistConcept-20151124.jpg
Some even thought it could be an asteroid field. Astronomers still use tools like the TESS satellite to watch it. They monitor the star to see if the dips happen again. Watching these changes helps us understand how stars and moons work. Even though it is far away, it teaches us about the universe. The mystery of Tabby's Star continues to grow every year.

408 words

Tabby's Star, also known as KIC 8462852, is a highly unusual binary star system. It is located in the constellation Cygnus, roughly halfway between the bright stars Deneb and Delta Cygni. The system consists of an F-type main-sequence star and a red dwarf companion. While most stars shine with a steady luminosity, this star shows massive, irregular fluctuations in brightness. These sudden drops in light have made it one of the most studied objects in modern astronomy. It serves as a vital case study for how we understand stellar behavior and orbiting material.

The most striking feature of this star is its irregular light curve. A light curve is a graph showing how a star's brightness changes over time. Most stars have very smooth, predictable curves. However, Tabby's Star experiences deep, unpredictable dips in its radiative flux, which is the amount of light energy it emits. In 2011, the star dimmed by up to 15%. In 2013, it experienced a massive drop of up to 22%. To put this in perspective, a planet as large as Jupiter would only obscure about 1% of a star this size. This indicates that the objects blocking the light are much larger than any known planet.

Astronomers have proposed several hypotheses to explain these massive dimming events. One early idea was the presence of an extraterrestrial megastructure, such as a Dyson swarm.

Dyson Swarm - 2.svg
Dyson Swarm - 2.svg
This would be a massive artificial construction built to capture a star's energy. However, most scientific evidence tends to discount this possibility. Another theory suggests the dimming is caused by a swarm of dusty comet fragments.
PIA20053-PossibleCometSwarmAroundKIC8462852-ArtistConcept-20151124.jpg
PIA20053-PossibleCometSwarmAroundKIC8462852-ArtistConcept-20151124.jpg
In 2019, researchers suggested the light dips might be caused by fragments from a disrupted exomoon. These fragments would orbit the star in a tight formation, blocking light as they pass through the line of sight.

The discovery of these fluctuations was a major milestone in citizen science. The data came from the Kepler space telescope, which was designed to find exoplanets by watching for tiny dips in starlight. As part of the Planet Hunters project, citizen scientists identified the unusual patterns in the Kepler data. In 2015, astronomer Tabetha S. Boyajian published the lead paper announcing these findings. Because of her work, the star is often called Boyajian's Star. It also earned the nickname "WTF Star," which stands for "Where's The Flux?" This name refers to the mysterious missing light in the scientific paper's subtitle.

Since the initial discovery, astronomers have used many different tools to monitor the star. In 2017, a major observation campaign occurred involving the Las Cumbres Observatory Global Telescope Network. During this time, astronomers tracked several specific dimming events named Elsie, Celeste, Skara Brae, and Angkor.

PIA22081-KIC8462852-TabbysStar-UnevenDustRing-Illustration-20171004.png
PIA22081-KIC8462852-TabbysStar-UnevenDustRing-Illustration-20171004.png
These events varied in depth, with some dipping by only 1% and others by nearly 3%. In 2018, even deeper dips of over 5% were recorded by ground-based observers. More recently, the Transiting Exoplanet Survey Satellite, or TESS, has also provided data to help map these changes.

The star's history and long-term behavior add even more complexity to the mystery. Observations of the star date back as far as 1890 through various astronomical catalogs. Some studies of old photographic plates suggested the star might have gradually faded by 20% over a century. However, other researchers argued this was just a data artifact and that the star remained constant. This debate shows how difficult it is to measure the brightness of distant stars accurately over long periods. The star remains a target for SETI projects, which search for signs of advanced technology in the universe.

Tabby's Star is not entirely unique, but its scale is extraordinary. There are other stars, such as young stellar objects called YSO dippers, that also show irregular dimming. However, the patterns in YSO dippers are different from the chaotic dips seen in KIC 8462852. The system's complexity is further increased by its red dwarf companion, located 880 AU away. For comparison, that distance is about 30 times the orbit of Neptune. By studying this star, scientists learn more about how dust, moons, and even planets interact with their parent stars.

686 words
🖼️ Images & Media (7)
File:KIC 8462852 in IR and UV.png
KIC 8462852 in IR and UV.png
File:KIC8462852BlueSquare&NearbyStars-20180603.jpg
KIC8462852BlueSquare&NearbyStars-20180603.jpg
File:PIA22081-KIC8462852-TabbysStar-UnevenDustRing-Illustration-20171004.png
PIA22081-KIC8462852-TabbysStar-UnevenDustR...
File:PIA20053-PossibleCometSwarmAroundKIC8462852-ArtistConcept-20151124.jpg
PIA20053-PossibleCometSwarmAroundKIC846285...
File:Artist’s Impression of a Baby Star Still Surrounded by a Protoplanetary Disc.jpg
Artist’s Impression of a Baby Star Still...
File:PIA18469-AsteroidCollision-NearStarNGC2547-ID8-2013.jpg
PIA18469-AsteroidCollision-NearStarNGC2547...
File:Dyson Swarm - 2.svg
Dyson Swarm - 2.svg
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