Inside Science
/
Article

BRIEF: 5G Internet is the Next Big Thing in Light Pollution

JAN 18, 2018
The fast-growing next-gen mobile network may threaten future radio astronomers’ ability to detect signals from space.
BRIEF: 5G Internet is the Next Big Thing in Light Pollution lead image

BRIEF: 5G Internet is the Next Big Thing in Light Pollution lead image

Composite image by Yuen Yiu, source image by John Fowler

(Inside Science) -- During last week’s American Astronomical Society meeting in National Harbor, Maryland, astronomers detailed the rise of a new and unexpected source of light pollution: radio waves. Although the human eye can’t see them, the waves are an important part of the electromagnetic spectrum that radio astronomers use to study the universe. Now wireless communications companies are poised to fill this part of the spectrum with more human-generated noise.

“The actual number one [threat to radio astronomy] these days is the advent of 5G -- the next generation of wireless mobile broadband,” said Harvey Liszt, a radio astronomer from the National Radio Astronomy Observatory in Charlottesville, Virginia. While the standards haven’t been finalized, he added, “the operators in this service are simply grabbing as much spectrum as they can.”

Radio waves are much lower in frequency and energy than visible light waves. Radio astronomy is essential for astronomers to observe lower energy phenomena in our universe, such as the cosmic microwave background -- a form of radiation left over from the Big Bang. However, just like a glowing city can obscure a stargazer’s view of the Milky Way, anything that emits radio waves can disturb a radio astronomer’s attempt to study the cosmos. The growing number of connected personal devices increases both the geographical reach of pollution and the parts of the spectrum that are affected.

Additionally, both Boeing and SpaceX have plans to launch thousands of satellites to provide broadband internet globally. Once these new systems come online, they can drown out or at least add noise to certain spectrums that radio astronomers commonly survey, said Liszt. Since the radio astronomy community is smaller than these global interests, the scientists plan to work with regulators and policymakers to limit the way these systems illuminate the sky outside of their allotted operating spectrum, according to Liszt.

More Science News
FYI
/
Article
AIP
/
Article
/
Article
Using principles of superposition and entanglement, researchers develop a framework to tailor a patient’s cancer treatment to their entire molecular background.
/
Article
Stackable cartridge-like device foregoes complex pumps and tubing by providing fluid flow with a hydrogel-based flow resistor that generates passive pressure gradients.
/
Article
There are tens to hundreds of billions of photons in a single firefly flash, a number that has historically been overestimated.
/
Article
The protein’s electrostatic field is the most important factor in the intensity of its light emission.
/
Article
/
Article
Nuclear winter, climate change, bioterrorism, AI. Those and other threats are growing in potential impact. What can we do?
/
Article
The specialized devices are democratizing access to cosmic-ray experiments.
/
Article
Europe’s particle physicists choose a 91 km electron–positron collider as the next global flagship project.
/
Article
The seasoned high school physics teacher challenges students to engage in an increasingly distracted world.