Red Giant Stars: Facts, Definition & the Future of the Sun (2024)

Red Giant Stars: Facts, Definition & the Future of the Sun (1)

Jump to:

  • Red giant star formation
  • Size and temperature
  • The future of the sun
  • Additional resources

A red giant is a dying star in the final stages of stellar evolution.

In about five billion years, our own sun will turn into a red giant, expand and engulf the inner planets — including Earth.

What does the future hold for the light of our solar system and others like it?

Related: Will our solar system survive the death of our sun?

Red giant star formation

Most of the stars in the universe are main sequence stars — those that convert hydrogen into helium in their cores via nuclear fusion.

Over the course of their "normal" lives, the outward pressure of fusion inside main sequence stars balances out the inward pressure of gravity. Once the core fusion stops, however, gravity takes over and begins compressing the star.

"This raises the internal temperature of the star and ignites a shell of hydrogen burning around the inert core," Swinburne University of Technology in Australia wrote in a stellar evolution explainer.

"Meanwhile, the helium core continues to contract and increase in temperature, which leads to an increased energy generation rate in the hydrogen shell," the explainer continues. "This causes the star to expand enormously and increase inluminosity— the star becomes ared giant."

Red giant size and temperature

Red giant stars bloat to 62 million to 620 million miles in diameter (100 million to 1 billion kilometers) — 100 to 1,000 times wider than our sun is today. Because these stars' energy is spread across such a large area, their surface temperatures are actually relatively cool, reaching only 4,000 to 5,800 degrees Fahrenheit (2,200 to 3,200 degrees Celsius), a little over half as hot as the sun. This temperature change causes stars to shine in the redder part of the spectrum, leading to the name "red giant," though they are often more orangish in appearance.

Red giants' core temperatures, however, continue to rise as the core contracts further, eventually reaching levels where helium fuses to form carbon. (This is known as the "triple alpha process" because it involves three helium-4 isotopes or alpha particles.) If the star is at least 2.2 times more massive than our sun, helium-to-carbon ignition is a relatively gradual process. But for less hefty stars, it occurs with an explosive flash.

Eventually, the helium in the core runs out and fusion stops. The core shrinks again and a helium shell just beyond it ignites, as happened with hydrogen shortly after the star burned through its stores of that initial fuel.

This ignition causes the giant's outer layers to expand even further, but its core continues to collapse in on itself. The star eventually becomes incredibly compact, turning into a superdense object known as a white dwarf. Around the time of this transition, the star ejects its outer layers in huge clouds of gas and dust known as planetary nebulae. (The misleading name was given by early astronomers, who thought these sky sights looked like planets.) These shells are much larger and fainter than their parent stars.

After spending about 1 billion years as a red giant, our own sun will become a white dwarf, packing most of its initial mass into a sphere roughly the size of Earth. This fate awaits many other stars as well — all of them that are less than about eight times more massive than the sun, in fact.

The end-of-life scenario for giant stars is different. Stars roughly eight to 40 times more massive than the sun, for example, go through a "red supergiant" phase. Their cores get hot enough to burn carbon, which our sun never will, and they eventually die in powerful supernova explosions. When it's all said and done, these massive stars leave behind either a neutron star or a black hole.

And this all happens quite quickly, cosmically speaking, because huge stars burn through their fuel very fast. For example, while our sun will end up fusing hydrogen in its core for about 10 billion years, stars that become red supergiants exhaust their reserves in just 10 million years or so. And they march through the other late-life steps even faster than that.

Some of the brightest and best-known stars in the night sky are red supergiants. Betelgeuse, which forms the shoulder of theconstellation Orion(The Hunter), is a red supergiant. So is Antares, the brightest star in the constellation Scorpius.

Related: Amazing photos of supernova explosions

The future of the sun

In approximately five billion years, our own sun will transition to the red giant phase. When it expands, its outer layers will consume Mercury and Venus and also reach Earth. Scientists are still debating whether or not our planet will be engulfed, or whether it will orbit dangerously close to the red giant sun. Either way, life, as we know it on Earth, will cease to exist.

Related: When will the sun die?

In fact, surface life on our planet will likely be wiped out long before the sun turns into a red giant. Our star has been getting warmer over the eons, as main-sequence stars of its mass do, and in a few hundred million years, it will be hot enough to start evaporating the oceans. So there may not be much left for our bloated, red-giant sun to destroy.

"The future of the Earth is to die with the sun boiling up the oceans, but the hot rock will survive," astrophysicist Don Kurtz, of the University of Lancashire, told Reuters.

Our changing sun may provide hope to other planets, however. When a star morphs into a red giant, it changes its home system's "habitable zone," the range of orbital distance where liquid water can exist on a world's surface. Because a star remains a red giant for approximately a billion years, it may be possible for life to arise on distantly orbiting planets and moons, which will finally receive some warmth.

"When a star ages and brightens, the habitable zone moves outward, and you're basically giving a second wind to a planetary system," exoplanet scientist Ramses M. Ramirez, a researcher at Cornell University's Carl Sagan Institute, said in a statement. "Currently objects in these outer regions are frozen in our own solar system, like Europa and Enceladus — moons orbiting Jupiter and Saturn."

The window of opportunity will be open only briefly, however. When the sun and other smaller stars shrink back down to white dwarfs, the life-giving light will dissipate. And supernovae from larger stars could present other habitability issues.

Red giant stars Q&A with an expert

We asked Sarafina El-Badry Nance, Berkeley astrophysicist and author, a few frequently asked questions about red giant stars.

Sarafina El-Badry Nance

Sarafina El-Badry Nance is an astrophysicist and Ph.D. candidate at UC Berkeley and Lawrence Berkeley National Lab researching supernovas and computational cosmology. She is the author of Dutton's newly-released memoir, STARSTRUCK: A Memoir of Astrophysics and Finding Light in the Dark.

What are red giant stars?

Red giant stars (RSGs) are bright, bloated, low-to-medium mass stars approaching the ends of their lives. Nuclear fusion is the lifeblood of stars; they undergo nuclear fusion within their stellar cores to exert a pressure counteracting the inward force of gravity.

Stars fuse progressively heavier and heavier elements throughout their lives. From the outset, stars fuse hydrogen to helium, but once stars that will form RSGs exhaust hydrogen, they're unable to counteract the force of gravity. Instead, their helium core begins to collapse at the same time as surrounding hydrogen shells re-ignite, puffing out the star with sky-rocketing temperatures and creating an extraordinarily luminous, rapidly bloating star. As the star's outer envelope cools, it reddens, forming what we dub a "red giant".

What does a red giant star turn into?

As the bloated, dying star expels gas as it expands, the core recedes back in on itself, until it ultimately fizzles out and becomes a white dwarf. The gas surrounding the white dwarf continues to glow, creating a planetary nebula that houses a white dwarf at its center.

What is an example of a red giant star?

A few examples of RSGs include Aldebaran, Arcturus, and Mira. Planetary nebulae, however, can be much more astonishing for the casual stargazer to observe, such as the Cat's Eye Nebula, the Little Dumbbell Nebula, and NGC 2438.

Will the sun become a red giant?

The fate of our sun exemplifies the evolution of RSGs. Our sun will become a red giant near the end of its life — in five billion years or so — growing so large that it will engulf the inner planets and even Earth itself. Then, the gently expelled outer layers will form a glowing planetary nebula surrounding the fizzled out core — a white dwarf.

Additional resources

You can find good introductions to the basics of stellar evolution at this Swinburne University of Technology page and from NASA here. To learn more about red giants in particular, check out this lecture posted by the University of Oregon. And NASA's exoplanet site has a nice summary of what will happen in our solar system when the sun becomes a red giant.

Bibliography

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Red Giant Stars: Facts, Definition & the Future of the Sun (2)

Nola Taylor Tillman

Contributing Writer

Nola Taylor Tillman is a contributing writer for Space.com. She loves all things space and astronomy-related, and enjoys the opportunity to learn more. She has a Bachelor’s degree in English and Astrophysics from Agnes Scott college and served as an intern at Sky & Telescope magazine. In her free time, she homeschools her four children. Follow her on Twitter at @NolaTRedd

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Red Giant Stars: Facts, Definition & the Future of the Sun (2024)

FAQs

Red Giant Stars: Facts, Definition & the Future of the Sun? ›

A red giant

giant
A giant star, also simply a giant, is a star with substantially larger radius and luminosity than a main-sequence (or dwarf) star of the same surface temperature.
https://en.wikipedia.org › wiki › Giant_star
is a dying star in the final stages of stellar evolution
stellar evolution
Stellar evolution is the process by which a star changes over the course of time. Depending on the mass of the star, its lifetime can range from a few million years for the most massive to trillions of years for the least massive, which is considerably longer than the current age of the universe.
https://en.wikipedia.org › wiki › Stellar_evolution
. In about five billion years, our own sun will turn into a red giant, expand and engulf the inner planets — including Earth. What does the future hold for the light of our solar system and others like it?

What are some interesting facts about red giants? ›

Red giants can be 20 and 100 times the size of the Sun though only contain 0.25 to 8 times the mass of the Sun. They are also very bright stars. The surface temperature of a red giant is less than 4,000 - 5,000 K. Over time, as the outer layers of the star expand, gravity causes its core to shrink and contract.

What defines a red giant star? ›

A red giant is a star that has exhausted the supply of hydrogen in its core and has begun thermonuclear fusion of hydrogen in a shell surrounding the core. They have radii tens to hundreds of times larger than that of the Sun.

What will the Sun do when it becomes a red giant star? ›

A star's habitable zone, or the region around the star where temperatures are warm enough for a planet's surface to sustain liquid water, depends on the star's temperature and brightness. As a red giant, our Sun will expand and heat up, forcing its current habitable zone, which now encompasses Earth, outward.

How big will the Sun be when it becomes a red giant? ›

After another ~5 billion years, it becomes a subgiant, expanding to double its current size. About 2.5 billion years later, it swells into a red giant, fusing helium internally. It will reach ~300 million km in diameter, engulfing Mercury, Venus, and possibly Earth, too.

How long do red giants live? ›

A red giant can last for a few millennia at the low end or live as long as one billion years. It is estimated that the sun, the star which provides the Earth with its light and heat, will begin the process of becoming a red star in 5 billion years.

Are red giants hotter than the Sun? ›

Because these stars' energy is spread across such a large area, their surface temperatures are actually relatively cool, reaching only 4,000 to 5,800 degrees Fahrenheit (2,200 to 3,200 degrees Celsius), a little over half as hot as the sun.

Is red giant a dying star? ›

A red giant forms after a star has run out of hydrogen fuel for nuclear fusion, and has begun the process of dying. A star maintains its stability through a fine balance between its own gravity, which holds it together, and the outwards pressure from ongoing thermonuclear fusion processes taking place at its core.

Will our Sun become a red giant? ›

The Sun will run out of hydrogen to fuse in less than 5 billion years, it will then transform into a red giant star and become so big that it will swallow up Mercury and Venus.

How hot is a red giant? ›

Red giant stars are so big that the temperature of the star decreases. Red giant stars are usually 2,200 - 3,200 degrees Celsius. This is the equivalent of 4,000 - 5,800 degrees Fahrenheit.

What will happen to the Sun in 5 billion years? ›

In 5 billion years, our sun will balloon into a red giant star. Whether Earth survives is an “open question,” said Melinda Soares-Furtado, an astrophysicist at the University of Wisconsin, Madison.

Can we stop the Sun from becoming a red giant? ›

Originally Answered: Is it possible to prevent, or delay, the Sun from turning into a red giant? How can we stop the Sun from turning into a red giant forever? Clearly, we can't, but humans will be gone from Earth long before that happens. As the sun brightens, life will eventually become impossible on Earth.

How long will Earth survive? ›

Drag from the chromosphere of the Sun would reduce Earth's orbit. These effects will counterbalance the impact of mass loss by the Sun, and the Sun will likely engulf Earth in about 7.59 billion years from now. The drag from the solar atmosphere may cause the orbit of the Moon to decay.

Will Earth survive red giant? ›

Earth's fate rests on a coin flip. In 5 billion years, our sun will balloon into a red giant star. Whether Earth survives is an “open question,” Melinda Soares-Furtado, an astrophysicist at the University of Wisconsin at Madison, says. Sure, Earth could be swallowed by the sun and destroyed.

Will our Sun become a black hole? ›

No. Stars like the Sun just aren't massive enough to become black holes. Instead, in several billion years, the Sun will cast off its outer layers, and its core will form a white dwarf - a dense ball of carbon and oxygen that no longer produces nuclear energy, but that shines because it is very hot.

What will the Sun end its life as? ›

When the Sun exhausts its store of nuclear fuel, some 5 billion years from now, it will evolve into a bloated red giant, gobbling up Mercury and Venus, and scorching the Earth. After ejecting its outer layers in the form of a colourful planetary nebula, the Sun will then be compressed into a tiny white dwarf star.

How fast do red giants grow? ›

Internally, the Sun's core will contract, which in turn will increase its temperature, igniting some more hydrogen fusion in a thin shell around the core. The layers outside the solar core will expand and, as a result, cool down. This expansion is gradual and takes about a billion years.

How hot do red giants get? ›

Typically red giant stars have surface temperatures of 3,000K - 5,000K. In contrast the surface temperature of the Sun is almost 6,000K. The cores of stars are much hotter. The Sun's core is about 14,000,000K.

How old are most red giants? ›

The red giants' building material points to an ancient age of more than 10 billion years. The stars contain comparatively little iron, an element that in the course of galactic evolution was produced only slowly.

How did red giants get their name? ›

A red giant is a giant star that has the mass of about one-half to ten times the mass of our Sun. Red giants get their name because they appear to be colored red and they are very large. Many red giants could fit thousands and thousands of suns like ours inside of them.

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