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TRAPPIST-1

space Maturity 5-7

There is a small red star.

The Sun and TRAPPIST-1.jpg
The Sun and TRAPPIST-1.jpg
It has seven planets. These planets are close to the star. Some might have water. This is very cool to see!
Comparison of the TRAPPIST-1 system with the inner Solar System and the Galilean Moons of Jupiter.jpg
Comparison of the TRAPPIST-1 system with the inner Solar System and the Galilean Moons of Jupiter.jpg
Do you like stars?

51 words

There is a small red star.

The Sun and TRAPPIST-1.jpg
The Sun and TRAPPIST-1.jpg
It is older than our Sun. This star has seven planets.
Comparison of the TRAPPIST-1 system with the inner Solar System and the Galilean Moons of Jupiter.jpg
Comparison of the TRAPPIST-1 system with the inner Solar System and the Galilean Moons of Jupiter.jpg
The planets are very close to the star. They move around it very fast. Some planets might have liquid water. This could mean they could hold life. It is a very busy system!

70 words

TRAPPIST-1 is a small, red star.

The Sun and TRAPPIST-1.jpg
The Sun and TRAPPIST-1.jpg
It is a red dwarf. This means it is much smaller and cooler than our Sun. It is about 7.6 billion years old. That makes it older than our Solar System.
Comparison of the TRAPPIST-1 system with the inner Solar System and the Galilean Moons of Jupiter.jpg
Comparison of the TRAPPIST-1 system with the inner Solar System and the Galilean Moons of Jupiter.jpg

This star has seven known planets. They are all rocky worlds like Earth. The planets stay very close to the star. They move in fast, circular orbits. Some planets take only 1.5 days to orbit once. Most of these planets are tidally locked. This means one side always faces the star. That side stays in permanent day. The other side stays in permanent night.

Scientists found these planets by watching the star's light. When a planet passes in front of the star, the light dims. This is called a transit. Four of the planets might have liquid water. This could make them hospitable to life. However, the star sends out many flares. These bright bursts of energy might change the planets' air. We do not know if they have atmospheres yet.

201 words

TRAPPIST-1 is a very special star located in the constellation Aquarius. It is a red dwarf, which is a type of star that is small and cool.

The Sun and TRAPPIST-1.jpg
The Sun and TRAPPIST-1.jpg
This star is much smaller than our Sun. Its radius is only about 12% of the Sun's size. However, it is still quite heavy. Its mass is about 9% of the Sun's mass. This mass is just enough to allow nuclear fusion to happen. Nuclear fusion is the way stars create energy.

This star has seven known planets orbiting around it. These planets are mostly rocky worlds similar to Earth.

Possible Interiors of the TRAPPIST-1 Exoplanets.jpg
Possible Interiors of the TRAPPIST-1 Exoplanets.jpg
They all stay very close to the star in a tight group. Because they are so close, they orbit the star very quickly. One planet takes only 1.5 days to finish an orbit. The furthest planet takes about 19 days. Most of these planets are tidally locked to the star. This means one side always faces the star in permanent day. The other side always faces away in permanent night.

Scientists discovered this star and its planets using special tools. Astronomer John Gizis first found the star in 1999. He was looking at a group of ultra-cool dwarf stars.

TRAPPIST-1 c Light Curve.jpg
TRAPPIST-1 c Light Curve.jpg
In 2016, a team led by Michaël Gillon found the planets. They used the TRAPPIST telescope at the La Silla Observatory in Chile. They noticed small changes in the star's light. This method is called a transit. A transit happens when a planet passes in front of its star. When this happens, the star's light dims slightly. This allowed scientists to see the planets.

There are many interesting facts about this system. The star is about 7.6 billion years old. This makes it older than our own Solar System.

Comparison of the TRAPPIST-1 system with the inner Solar System and the Galilean Moons of Jupiter.jpg
Comparison of the TRAPPIST-1 system with the inner Solar System and the Galilean Moons of Jupiter.jpg
The planets are very close to each other. The distance between two planets can be only twice the distance between Earth and the Moon. Four of the planets are named d, e, f, and g. These four might have temperatures right for liquid water. Scientists are still studying if they have atmospheres.

Learning about TRAPPIST-1 helps us understand other worlds. It is a very compact system. This means everything is packed closely together.

Comparison of TRAPPIST-1 to the Solar System.jpg
Comparison of TRAPPIST-1 to the Solar System.jpg
It is much more compact than our Solar System. The planets all sit in a flat plane. This makes it the flattest planetary system in the NASA Exoplanet Archive. Even though the star is small, it is very active. It can send out bright flares of energy. These flares are important for scientists to study.

459 words

TRAPPIST-1 is an ultra-cool red dwarf star located in the constellation Aquarius. It is a small, dim star that belongs to the M8V spectral type.

The Sun and TRAPPIST-1.jpg
The Sun and TRAPPIST-1.jpg
While it is much smaller than our Sun, it is still a massive object. It has a mass about 9% that of the Sun. This mass provides enough pressure to allow nuclear fusion to occur. Nuclear fusion is the process where a star creates energy. This star is quite old, estimated at 7.6 billion years. This makes it significantly older than our own Solar System. Because it is a red dwarf, it will shine for a very long time. Scientists expect it to last for ten trillion years. This is about 700 times longer than the current age of the Universe.

The star is characterized by its low temperature and low luminosity. Its surface temperature is very low for a star. This makes it the coldest-known star to host a planetary system. Its luminosity is only about 0.055% of the Sun's luminosity. Most of the energy it emits is in the form of infrared radiation.

TRAPPIST-1 c Light Curve.jpg
TRAPPIST-1 c Light Curve.jpg
The star also shows signs of activity on its surface. Cold starspots might cover up to one quarter of its photosphere. A photosphere is the visible outer layer of a star. The star also produces frequent flares. Some observations showed 42 flares in just 80 days. These flares release large amounts of energy. They could potentially alter the atmospheres of nearby planets.

The TRAPPIST-1 system is famous for its seven known terrestrial planets. These planets are designated alphabetically from b to h.

Comparison of the TRAPPIST-1 system with the inner Solar System and the Galilean Moons of Jupiter.jpg
Comparison of the TRAPPIST-1 system with the inner Solar System and the Galilean Moons of Jupiter.jpg
All seven planets orbit the star in very circular paths. They all lie in the same flat plane. This makes it the flattest planetary system in the NASA Exoplanet Archive. The planets are very close to one another. The distance between two planets can be as small as twice the distance between Earth and the Moon. Their orbital periods are very short. They range from just 1.5 days to 19 days. This creates a very compact system compared to our Solar System.

Scientists discovered these planets using the transit method. A transit occurs when a planet passes in front of its host star.

Curvas de luz de los siete planetas de TRAPPIST-1 durante su tránsito.png
Curvas de luz de los siete planetas de TRAPPIST-1 durante su tránsito.png
When this happens, the star's apparent magnitude dims. This causes a dip in the light curve measured by telescopes. The TRAPPIST-South telescope in Chile helped find the first two planets in 2016. A team led by Belgian astronomer Michaël Gillon led this discovery. Further analysis in 2017 identified five more planets. Many telescopes helped, including the Spitzer Space Telescope and the Kepler telescope. This research is considered some of the most important work for the Spitzer mission.

The planets have physical properties that interest researchers deeply. Their radii range from 77.5% to 112.9% of Earth's radius. Their masses are comparable to Earth's mass.

Possible Interiors of the TRAPPIST-1 Exoplanets.jpg
Possible Interiors of the TRAPPIST-1 Exoplanets.jpg
Many of these planets have low densities. This suggests they might contain large amounts of volatile material. Volatiles are substances like water or gases that evaporate easily. The planets might have deep oceans or thick layers of ice. Some might even have subsurface oceans under icy shells. These compositions are still being studied due to measurement uncertainties.

One of the most exciting aspects is the potential for habitability. Four planets—d, e, f, and g—orbit in a specific zone. In this zone, temperatures may allow liquid water to exist. Liquid water is a key requirement for life as we know it. However, the planets are likely tidally locked to the star. This means one side always faces the star in permanent day. The other side stays in permanent night. The star's radiation also poses a challenge. Frequent flares could strip away planetary atmospheres. In fact, observations of TRAPPIST-1b ruled out the existence of an atmosphere.

The planets also exist in orbital resonance. This means their orbital periods follow simple mathematical ratios.

PIA21427 - TRAPPIST-1 Planetary Orbits and Transits.ogg
PIA21427 - TRAPPIST-1 Planetary Orbits and Transits.ogg
For example, neighboring planet pairs have ratios like 8:5 or 3:2. These resonances help keep the system stable over billions of years. This complex gravitational dance is a major part of the system's structure. Studying TRAPPIST-1 helps astronomers understand how compact systems form. It also provides a way to study how small stars affect their planets. The system remains a primary target for future space telescope observations.

763 words
🖼️ Images & Media (12)
The ultracool dwarf star TRAPPIST-1 in...
File:The Sun and TRAPPIST-1.jpg
The Sun and TRAPPIST-1.jpg
File:Comparison of the TRAPPIST-1 system with the inner Solar System and the Galilean Moons of Jupiter.jpg
Comparison of the TRAPPIST-1 system with...
File:Possible Interiors of the TRAPPIST-1 Exoplanets.jpg
Possible Interiors of the TRAPPIST-1...
PIA21427 - TRAPPIST-1 Planetary Orbits...
File:Comparison of TRAPPIST-1 to the Solar System.jpg
Comparison of TRAPPIST-1 to the Solar System.jpg
File:PIA21424 - The TRAPPIST-1 Habitable Zone.jpg
PIA21424 - The TRAPPIST-1 Habitable Zone.jpg
File:TRAPPIST-1 c Light Curve.jpg
TRAPPIST-1 c Light Curve.jpg
File:Curvas de luz de los siete planetas de TRAPPIST-1 durante su tránsito.png
Curvas de luz de los siete planetas de...
File:Curva de luz de TRAPPIST-1 que muestra los eventos de disminución de la luz causados por el tránsito de los planetas.png
Curva de luz de TRAPPIST-1 que muestra...
File:Trappist1-final-hour-long-cadence.gif
Trappist1-final-hour-long-cadence.gif
File:TRAPPIST-1e Const CMYK Print.png
TRAPPIST-1e Const CMYK Print.png
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