NASA just made an interstellar tweak to the Voyager 2 spacecraft, known as the “Big Bang”, to keep its remaining 50-year-old science instruments running a little longer.
Voyager 2 and its twin launched in 1977, called Voyager 1, rely on a form of nuclear battery known as a radioisotope thermoelectric generator that uses the heat produced by the decay of plutonium. But the supply of plutonium on each probe drops at about four watts a year on each spacecraft.
To keep the probe running on this dwindling power supply, engineers recently reduced Voyager 2’s power requirements by turning off a few non-science devices and using “lower-power alternatives” that are still effective enough to keep the spacecraft warm while it’s so far from the sun, NASA officials said in a statement. “The spacecraft power margins have grown razor thin, requiring the team to conserve energy by shutting off non-essential devices and systems,” NASA officials wrote of the mission, which is managed by the agency’s Jet Propulsion Laboratory.
The drop in power is having a measurable science impact on both spacecraft — each has turned off two of their science instruments since 2024 alone. While some of these instruments were shut off after the spacecraft finished their historic planetary flybys decades ago, others were turned off due to power requirements.
Each spacecraft initially launched with 10 instruments, and Voyager 2 is now down to only three instruments. At first it looked as though Voyager 2 would have to shut down another of these instruments later this year, but luckily, the new power shifts will allow all three to operate “for at least another year,” NASA said.
Voyager 1 will be tasked to do the same “Big Bang” power change “in the coming months.” A signal to each spacecraft takes nearly 24 hours (or one light-day) to make a one-way journey, and officials noted Voyager 1 is further from Earth than its twin. (Voyager 2 is at about 142 astronomical units or sun-Earth distances, while Voyager 1 is nearing 171 AU.)
The two spacecraft initially launched to take advantage of a rare alignment between the outer solar system gas giant planets, which in order of distance from the sun are Jupiter, Saturn, Uranus and Neptune. Each Voyager spacecraft first flew past Jupiter and Saturn, taking unprecedented imagery of the planets and their moons.
Next, Voyager 1 was directed to fly above the plane of the solar system (also known as the ecliptic) while Voyager 2 continued flying past Uranus and Neptune, becoming the first spacecraft to see these worlds and their moons. Voyager 2’s last planetary flyby was in 1989.
The two spacecraft continue to send scientific data from interstellar space; Voyager 1 passed into that region in 2012, while Voyager 2 did so in 2018. Voyager 1 is Earth’s most distant spacecraft, currently around 15.9 billion miles (25.5 billion kilometers) away from us, according to NASA.
