Vue normale

Chinese Start-Up Lands Reusable Rocket for the First Time

19 août 2026 à 17:49
The milestone by the private company, LandSpace, could put China closer to challenging SpaceX’s rule in lower-cost spaceflight.

© LandSpace/Xinhua, via Associated Press

Coming next summer: the ‘eclipse of the century.’

13 août 2026 à 02:19
The sky will go dark for six minutes or more over landmarks like the Rock of Gibraltar, the casbah of Tangier and the temples of Luxor, Egypt.

© Amir Hamja/The New York Times

Watching the solar eclipse at Washington Square Park in New York in 2024.

Mike Fincke, NASA Astronaut Whose Health Scare Led to I.S.S. Evacuation, Has Retired

13 août 2026 à 12:59
Mike Fincke spent 459 days in space across four missions, the fourth most time of any NASA astronaut.

© Miguel J. Rodriguez Carrillo/Agence France-Presse — Getty Images

The NASA astronaut Michael Fincke last month at the Kennedy Space Center in Florida.

How Scientists Use Eclipses for Research

12 août 2026 à 12:11
It’s a chance not just to study the sun but also space weather, light pollution and even animal behavior.

© Gemma Miralda/Associated Press

The Gran Telescopio Canarias, at the Roque de los Muchachos Observatory on the island of La Palma in the Canaries, Spain.

A Space Expert Hoped to Use the Eclipse as Science Class. The D.J.s Had Other Plans.

12 août 2026 à 12:19
Mar Carretero-Castrillo, an astrophysicist, returned to her remote village in Spain to be in the path of totality. Hundreds of partygoers came too.

© Finbarr O'Reilly for The New York Times

Mar Carretero-Castrillo playing an eclipse-themed card game with residents in Castrillo de la Reina, Spain, on Tuesday.

How to Safely Watch the Solar Eclipse, Even Without Glasses

Par : Leo Sands
12 août 2026 à 11:40
If you plan to watch the solar eclipse, make sure your lenses offer enough protection. Alternatively, you can safely watch using household items.

© Juan Barreto/Agence France-Presse — Getty Images

Women use box pinhole projectors to watch a solar eclipse in Bogotá in Colombia in 2023.

The Eclipse Is Coming, and Iceland Is Looking for a Break in the Clouds

11 août 2026 à 09:39
Rooms were booked years ago, and officials have been making plans. But there’s no telling where, exactly, Icelanders might go to find the best possible view.

© Amelia Nierenberg/The New York Times

Cloudy skies along the road to the Latrabjarg cliffs, the place in Iceland where the total eclipse will last the longest on Wednesday.

Musk, Money and Mars

5 août 2026 à 16:52
SpaceX shares are down, but Elon Musk is still the richest man in the world. What’s next?

© Andres Kudacki for The New York Times

  • ✇404 Media
  • A Hidden 'Dark Dimension' Could Rewrite Our Understanding of the Universe
    Scientists have proposed the existence of a fifth “dark dimension” that governs the behavior of both dark energy and dark matter—and which may be observationally detected in the near future, according to a recent preprint study. The dark dimension hypothesis could potentially provide an elegant solution to some of the biggest mysteries in science, including the nature of dark matter, an unidentified substance that makes up most mass in the universe, and dark energy, the term for whatever is c
     

A Hidden 'Dark Dimension' Could Rewrite Our Understanding of the Universe

31 juillet 2026 à 08:47
A Hidden 'Dark Dimension' Could Rewrite Our Understanding of the Universe

Scientists have proposed the existence of a fifth “dark dimension” that governs the behavior of both dark energy and dark matter—and which may be observationally detected in the near future, according to a recent preprint study

The dark dimension hypothesis could potentially provide an elegant solution to some of the biggest mysteries in science, including the nature of dark matter, an unidentified substance that makes up most mass in the universe, and dark energy, the term for whatever is causing the universe to expand at an accelerating rate. 

The idea arose from string theory, a decades-old framework that suggests the universe contains many dimensions beyond the four dimensions that we can perceive as humans—time, and three-dimensional space. In a series of studies published over the past several years, a group of string theory experts have suggested that one of these dimensions could simultaneously govern dark matter and dark energy, and that this dimension changes over time. 

“The question was whether or not this extra dimension is frozen or can evolve,” said Cumrun Vafa, the Timken University Professor in the physics department at Harvard University and an author on these studies, including the newest preprint, in a call with 404 Media. “The fifth dimension is somehow related to the value of dark energy, so it's natural that when the value of the extra dimension changes, the value of dark energy also changes.”

When Vafa and his colleagues started to develop this idea, the conventional wisdom was that dark energy had a fixed value, according to the standard model of cosmology, a well-corroborated set of assumptions that explains most laws and phenomena in the universe.  

“We were scrutinized by our colleagues for predicting that string theory requires dark energy to change, whereas dark energy looks constant,” said Vafa. “This is not good for our field because you are predicting string theory is inconsistent with observation.”

But the assumption that dark energy has a fixed value, a central tenet of the standard model, has been challenged by the Dark Energy Spectroscopic Instrument (DESI), a major survey of the universe based at the Kitt Peak National Observatory in Arizona, which released its first results in 2025. 

To the surprise of many scientists, the DESI release hinted that the value of dark energy may shift over time, a discovery that was in line with predictions of a dark dimension put forward by Vafa’s team.

“We didn't write a model to fit the data, but rather we had a model based on theory,” said Vafa. “Now that fits the data automatically. That is why I believe in it. It's easy to write a model after you know the data to try to fit it somehow. This is not what we did.”

“Our model is still the best model, as far as I know, that fits the DESI results,” he added.  

In their newest preprint, which is currently in the process of peer review, Vafa and his colleagues expand on the workings of this possible dark dimension in light of the DESI data. According to string theory, the universe has many dimensions that are “compactified” into subatomic scales that are not detectable by current instruments, which is why we have not discovered them. The hypothetical dark dimension, however, may be enlarged to a micron scale range. 

This would allow gravitons, which are the hypothetical particles that mediate the force of gravity, to spill over into the dark dimension, where they would become dark matter particles. In this view, dark matter is not made of some new form of exotic particle. Instead, it’s made up of gravitons that also exist in our familiar universe and have traversed into the dark dimension. 

“We are using the extra dimension to our benefit to explain what dark matter is,” Vafa said. “We don't need to introduce a new particle or particles. We are just saying it's the usual gravity.”

As this dark dimension evolves, so does the mass of these dark matter particles in that realm; Vafa’s team predicts they are becoming lighter. Likewise, the value of dark energy weakens over time. In this way, dark matter and dark energy—long thought to be likely unrelated—arise from the properties of the same extra dark dimension.

It’s a trippy and esoteric concept, and it may soon be put to the test. If a dark dimension does exist, then it should manifest as tiny deviations in Newton's gravitational force at micrometer scales. A team at the Institute for Quantum Optics and Quantum Information in Vienna is currently designing an experiment to test this idea, which could yield results in the coming years. 

Moreover, if dark matter particles are just gravitons that wandered into a dark dimension, then there should be some subtle observational hints of “a fifth force” in the dark sector. For example, scientists plan to test the hypothesis by closely watching the movements of stars in interacting galaxies, which are held together by dark matter halos, to search for a dark fifth force. 

When the galaxies come near each other, “the visible matter attracts the visible matter of the other galaxy, and dark matter of one also attracts the dark matter of the other galaxy as well,” Vafa explained. “But there's extra force between the dark matter compared to the visible matter because of this fifth force, so you get a more attractive force pulling the dark matter towards each other more than the visible part.”

“There are multiple fronts where things can come together,” he concluded. “Of course, the most exciting would be the confluence of all of these together, that somehow they agree. That would be really remarkable.”

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