All posts tagged: habitable planets

New computer simulation reveals exactly how gas giants form

New computer simulation reveals exactly how gas giants form

New simulations suggest gas giants can build roughly 10-Earth-mass solid cores in about 200,000 years when icy pebbles drifting inward from the outer disk grow into planetesimals before being swept up by embryos. Instead of relying mainly on inefficient direct pebble capture, the process concentrates solid material between roughly 6 and 9 astronomical units, where relatively small planetesimals can feed planetary cores rapidly. The model offers a possible solution to the long-standing problem of forming Jupiter-like planets before their gas disks disappear or their growing cores migrate too close to their stars. Building something as massive as Jupiter presents planetary scientists with a timing problem. A giant planet must assemble a large solid core while plenty of hydrogen and helium still surrounds its young star, yet conventional planet-building processes can take too long. Computer simulations now suggest a possible shortcut. Icy particles born far from a young star can drift inward, collide and grow into larger bodies that pile up in a relatively narrow region of the protoplanetary disk. Planetary embryos there can then consume …

Life in the universe may have formed less than 300 million years after the Big Bang

Life in the universe may have formed less than 300 million years after the Big Bang

Water-rich environments capable of forming stars and planets may have existed only 100 million to 200 million years after the Big Bang. Simulations suggest explosions from the universe’s first stars could have created dense pockets containing water at levels approaching those found in the solar system. The findings do not show that life existed that early, but they greatly widen the period when potentially habitable worlds could have begun forming. Life on Earth has existed for at least 3.7 billion years, but the universe had already been around for billions of years before our planet formed. That leaves a much older question hanging over astrobiology: How soon after the Big Bang could the ingredients for life have appeared? Computer simulations now suggest one crucial ingredient, water, may have emerged astonishingly early. A 2025 study in Nature Astronomy found that supernova explosions from the first generation of stars could have produced water-rich pockets of gas only 100 million to 200 million years after the Big Bang. In some of those dense regions, the simulated amount of …

NASA’s giant space ‘starshade’ could help ground telescopes photograph another Earth

NASA’s giant space ‘starshade’ could help ground telescopes photograph another Earth

NASA researchers are developing a hybrid observatory that would pair a giant telescope on Earth with a 99-meter starshade orbiting about 175,000 kilometers away. The starshade would block a nearby star before its light enters Earth’s atmosphere, potentially allowing extremely large telescopes to directly photograph Earth-like planets. Simulations suggest the system could study entire nearby planetary systems and search exoplanet atmospheres for oxygen, water, methane and other potential signs of habitability. Finding another Earth is not simply a matter of building a bigger telescope. An Earth-like planet orbiting a Sun-like star is so faint that its host star can overwhelm its reflected light by a factor of billions. A NASA-led team wants to solve that problem by putting the light blocker in space while leaving the telescope on the ground. The proposed Hybrid Observatory for Earth-like Exoplanets, or HOEE, would pair an enormous orbiting starshade with the next generation of extremely large optical telescopes. The starshade would create an artificial eclipse, preventing most of a target star’s light from reaching the telescope while allowing reflected …

Rocky planets smaller than Earth may be too small to stay habitable

Rocky planets smaller than Earth may be too small to stay habitable

While a planet can orbit around a Sun-like star and sit comfortably within its habitable zone, it could also potentially not meet any of the fundamental requirements for sustaining life. Specifically, a planet can entirely lose its atmosphere. The University of California, Riverside has produced research on this problem regarding exoplanets in the habitable zone of other stars: how small of a planet will remain habitable if it were to exist in the habitable zone of a Sun-like star? Using a model developed to depict how planets develop, including cooling, outgassing, and atmospheric loss, researchers were able to identify a distinct size threshold. Rocky planets that are smaller than 0.8 times Earth’s radius will have very low chances of being able to maintain an atmosphere over billions of years while in the habitable zone around a Sun-like star. This information is critical because of the increasing quantity of known exoplanets. With limited time to conduct telescope observations, astronomers must now develop improved processes to determine which smaller rocky exoplanets would have a high probability of …