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Two of the Universe’s Great Mysteries May Have Their Own Dimension


According to the standard model of cosmology, that expansion rate should be the same no matter how you measure it. But in recent years, scientists have found that the expansion rate of the early universe and that of the more recent universe vary by approximately 9 percent.

That discrepancy, or tension, “has provoked heated debates in the cosmology community about whether this difference could be due to systematic errors or whether it is a signal of new physics,” Teixeira and her co-authors wrote. Their model posits that in a world where dark energy and dark matter interact, what seemed to be a crisis caused by disparate expansion rates instead becomes something to be expected.

A Dark Dimension

If dark energy and dark matter do interact, it could mean that they have a common origin, Khoury said.

Ongoing work in string theory—the idea that our universe, at its smallest, most fundamental level, is made up of vibrating strings—suggests a way these concepts might be connected. In 2019, building on the idea in string theory that dark energy is naturally varying, Vafa and two collaborators concluded that the mass of dark matter particles may also vary over time. This led them to propose in 2022 that dark matter and dark energy could share a link with a so-called dark dimension.

String theory posits the existence of six or seven extra dimensions in addition to our familiar three dimensions of space and one of time. All of these dimensions are thought to be as small as physically possible—close to the Planck scale (10-35 meters)—but the researchers proposed that the dark dimension could be significantly bigger than the others—on the order of a micron (10-6 meters).

Gravitons, theoretical particles that impart the force of gravity, could leak into this enlarged dark dimension. If they did, they would pick up mass and become what are called dark gravitons. These massive gravitons would reside in the dark dimension, but their gravitational effects could be felt in other dimensions, allowing them to fulfill the role that is normally ascribed to dark matter.

Image may contain Cumrun Vafa Body Part Finger Hand Person Adult Teacher Face Head Photography and Portrait

Cumrun Vafa, a physicist at Harvard University, thinks the mass of dark matter may vary over time.

Courtesy of Quanta

In this scenario, “there is a very natural coupling between dark energy and dark matter,” said Georges Obied, a physicist at the University of Chicago. Changes in the size of the dark dimension would affect both dark energy and dark matter.

In a July 2025 paper, Obied and Vafa, along with Alek Bedroya of Princeton and David Wu of Harvard, found that the scenario proposed in 2019 was consistent with the DESI data. Their model predicts that the strength of dark energy and the mass of dark matter will decrease over time and that the rate at which dark energy changes will be proportional to its energy density. Because astrophysical measurements tell us that the energy density of dark energy is extraordinarily small, “it won’t change fast,” Vafa said.

“It’s not surprising that we didn’t see it until now,” he said, because the rate of change is so tiny. “We had to wait the entire age of the universe to detect something that small.”



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