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This company’s plans to deploy space mirrors could jeopardize the night sky for many

MIT Technology Review Published Aug 21, 2026 Reviewed Aug 22, 2026 ✓ Reviewed by citations.press editors
This company’s plans to deploy space mirrors could jeopardize the night sky for many
Reflect Orbital plans to launch a test satellite called Eärendil-1 later this year, which will extend an 18-by-18-meter mirror in orbit.
18 meters · mirror dimension18 meters · mirror dimension Reflect Orbital, company
Reflect Orbital plans to launch up to 50,000 larger satellites, each measuring 54 by 54 meters, to reflect sunlight to Earth on demand.
at least 50000 satellites · larger satellites54 meters · satellite dimension54 meters · satellite dimension Reflect Orbital, company
The Federal Communications Commission approved Reflect Orbital's Eärendil-1 launch in July.
Federal Communications Commission, regulator
Miroslav Kocifaj and his colleagues found that within a five-kilometer target area, a single Reflect Orbital satellite would appear about 40 times brighter than the full moon.
5 kilometers · beam's target area diameterabout 40 times · brightness compared to full moon Miroslav Kocifaj, astronomer at the Slovak Academy of Sciences
Miroslav Kocifaj and his colleagues calculated that as far as 14 kilometers away from the center of the beam, a single Reflect Orbital satellite would still be as bright as the full moon.
14 kilometers · distance from beam center Miroslav Kocifaj, astronomer at the Slovak Academy of Sciences
Miroslav Kocifaj and his colleagues calculated that combining the beams of 400 Reflect Orbital satellites would yield a light as bright as 10,000 full moons within a five-kilometer area, or 2.4% as bright as the sun.
400 satellites · Reflect Orbital satellites10000 full moons · brightness5 kilometers · area diameter2.4 · brightness compared to sun Miroslav Kocifaj, astronomer at the Slovak Academy of Sciences
Miroslav Kocifaj and his colleagues calculated that a combined beam from Reflect Orbital satellites would be visible as "a glow above the horizon" even up to 80 kilometers away.
at least 80 kilometers · visibility distance Miroslav Kocifaj, astronomer at the Slovak Academy of Sciences
Olivier Hainaut, an astronomer at the European Southern Observatory in Germany, previously modeled that Reflect Orbital’s beams would brighten the sky up to 300% worldwide.
at least 300 · sky brightness increase Olivier Hainaut, astronomer at the European Southern Observatory in Germany
In August, a group of organizations including DarkSky International and the American Bird Conservancy urged the FCC to review its approval of the Eärendil-1 satellite.
DarkSky International and the American Bird Conservancy, organizations
Reflect Orbital stated in a March filing with the FCC that observing Eärendil-1 with a telescope larger than 12 inches may be unsafe for human eyes.
more than 12 inches · telescope size Reflect Orbital, company

A company that plans to beam sunlight from space to Earth on demand might unintentionally brighten the night sky for many more people than intended, according to a new study.

Later this year, the US company Reflect Orbital plans to launch a test satellite called Eärendil-1 that will extend an 18-by-18-meter mirror in orbit. The goal is to test the feasibility of the company’s plans to launch up to 50,000 larger satellites, measuring 54 by 54 meters, and reflect sunlight to Earth on demand.

The case for doing this remains somewhat uncertain, but Reflect Orbital has said the goal is to prolong the hours of sunlight for various uses, including solar panel charging, emergency response, and military activities.

The launch, which was approved by the Federal Communications Commission in July, has been met with disbelief by astronomers and environmental groups. “This is incompatible with astronomy,” says Samantha Lawler, an astronomer at the University of Regina in Canada. “There is no way you can do this and preserve dark skies.”

Miroslav Kocifaj, an astronomer at the Slovak Academy of Sciences, and his colleagues have now calculated the broader effect on the night sky. In a new paper published online and accepted for publication in the space journal Astrophysical Journal Letters, they studied the extent to which the light the satellites beamed to the ground would scatter.

They found that within the beam’s target area, intended to be a circular patch five kilometers across, a single Reflect Orbital satellite would appear about 40 times brighter than the full moon in the sky. As far as 14 kilometers away from the center of the beam, the satellite would still be as bright as the full moon. 

Combining the beams of 400 satellites, which Reflect Orbital eventually plans to do, would yield a light as bright as 10,000 full moons within the five-kilometer area, or 2.4% as bright as the sun. Even up to 80 kilometers away, Kocifaj and his colleagues calculated, this combined beam would be visible as “a glow above the horizon," he says. That means the night sky would be altered for many more people than those within the area Reflect Orbital intends to illuminate.

“Deploying these mirrors would be seriously damaging for astronomy and for the nighttime environment,” says Kocifaj.“ The damage extends far beyond the target area.”

Olivier Hainaut, an astronomer at the European Southern Observatory in Germany, says the results of the paper are not surprising but are still useful. “These guys are really good at that kind of modeling,” he says. “They know what they’re doing.”

Hainaut had previously modeled the broader effect of Reflect Orbital’s beams, finding they would brighten the sky up to 300% worldwide. This latest work gives an even more complete picture of what the impact would be. “These two papers really cover most of it,” he says.

Reflect Orbital CEO Ben Nowack disagrees with the findings of Kocifaj’s paper. “Some assumptions are simply inaccurate,” he says. “The critical point is that our safeguards, including maintaining exclusion zones, take account of scattering.”

He says that the company has “engaged substantively with legitimate concerns raised by astronomers, environmental researchers, and scientists,” and that their feedback has “informed our technology and operational plans.”

Kocifaj says that Reflect Orbital has not provided data to back up its claims. The company “states that safeguards exist, that scattering is taken into account, and that the models are being updated, but it gives no numbers, no description of the model, no assumptions, and no data,” he says. “There is therefore nothing that can be engaged with technically. Our calculations produce concrete figures.”

Reflect Orbital’s intention is to place its satellites into highly inclined orbits above Earth, almost from pole to pole. This will enable them to reflect sunlight in the hours before sunrise and after sunset, extending daylight hours in certain locations. Eventually, the company has said, it wants to place satellites high enough to provide light 24-7 to locations on Earth.

In August, a group of organisations including DarkSky International and the American Bird Conservancy urged the FCC to review its approval of the Eärendil-1 satellite. As well as the impact on astronomy raised by this and future satellites, the group also highlighted potential negative consequences for aviation and wildlife.

“Our primary request is straightforward: Reverse the Space Bureau’s order, and require a lawful public-interest and NEPA [National Environmental Policy Act] review,” the group said in a statement.

The satellites could also pose risks to humans, according to Reflect Orbital itself. In a filing with the FCC in March, the company said that observing Eärendil-1 with a telescope larger than 12 inches —which many astronomers have access to—may be unsafe for human eyes. It added, though, that such observations are “unlikely to … result in significant injury” because the satellites are not constantly bright.

Currently there is no global entity that could regulate satellites such as these, so approval falls to national regulators such as the FCC in the US. Michelle Hanlon, a space lawyer at the University of Mississippi's School of Law, says there are “real benefits” to the plans proposed by Reflect Orbital. “It could extend the productive hours of solar facilities and provide light in remote areas or after a disaster,” she says.

However, the “legal basis is less clear than the technology,” she says. The FCC “does not have authority to license or regulate the operation of the solar reflector itself.” It can only authorize the use of radio frequencies to communicate with the spacecraft.

That means Reflect Orbital will need permission on a national and local level to reflect sunlight onto the ground, but if the beams spread as much as Kocifaj and his team predict, “the company could need approvals in more than one jurisdiction,” says Hanlon. “There may also be aviation-safety and cross-border questions.”

The fierce debate over the satellites shows no signs of abating. “It makes me sad that astronomers are having to spend their time doing these sorts of calculations rather than actually doing astronomy,” says Lawler. “This is not what we want to spend our time on.”

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