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Fallout from NASA's asteroid-smashing DART mission could hit Earth — potentially triggering 1st human-caused meteor shower

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Millions of tiny space rock fragments may be on a collision course with Earth and Mars after NASA deliberately crashed a probe into a far-away asteroid two years ago, a new study reveals. The celestial shrapnel, which could start hitting our planet within a decade, poses no risk to life on Earth — but it could trigger the first ever human-caused meteor showers.

On Sept. 26, 2022, NASA's Double Asteroid Redirection Test (DART) spacecraft purposefully collided with the asteroid Dimorphos, smashing right into the middle of the space rock at around 15,000 mph (24,000 km/h). The epic impact, which occurred more than 7 million miles (11 million kilometers) from Earth, was the first test of humanity's capability to redirect potentially hazardous asteroids that pose a threat to our planet.

The mission was a major success. Not only did DART alter Dimorphos' trajectory — shortening its trip around its partner asteroid Didymos by around 30 minutes — it also completely changed the shape of the asteroid. It demonstrated that this type of action, known as the kinetic impactor method, was a potentially viable option for protecting our planet from dangerous space rocks.

Photos of Dimorphos captured in the aftermath of the impact showed that the collision also ejected a large plume of debris into space, including dozens of large boulders that researchers believe could smash into Mars in the next few decades. None of these larger fragments are expected to hit Earth.

But in the new study, which was uploaded Aug. 7 to the preprint server arXiv and has been accepted for publication in The Planetary Science Journal, researchers turned their attention to Dimorphos' smaller fragments.

The researchers used a NASA supercomputer to analyze data collected by the European Space Agency's Light Italian Cubesat for Imaging of Asteroids (LICIACube) spacecraft, which flew alongside DART as the spacecraft smashed into Dimorphos. They then simulated the initial trajectory and velocities of 3 million fragments. This revealed that many of the asteroid pieces will likely reach Mars or the Earth-moon system.

Related: Could scientists stop a 'planet killer' asteroid from hitting Earth?

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