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Dark Energy Isn't Constant? ⚡ экспресс

Original: "Breaking Free from the Swampland of Impossible Universes through the DESI Portal"
· Luis A. Anchordoqui, Dieter Lust
arXiv:2605.10476 · 2026-05-11 · CC BY · ⏱ 1 min · Cosmology HEP Theory
Observations of millions of galaxies hint that dark energy, the “yeast” of the Universe, might be weakening over time.
Abstract

Modern cosmology assumed that dark energy—the mysterious force accelerating the expansion of the universe—was constant. But new data from the DESI telescope show that its density has dropped by about 10% over the past few billion years. It's like a battery that's slowly losing charge. So maybe the universe's "engine" isn't eternal—it's gradually running out?

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For a long time, dark energy—the mysterious force prodding the expansion of the Universe—was considered eternal and unchanging, like yeast that never loses its activity. But explaining such constancy through the laws of the microcosm proved impossible, and scientists began to suspect that the “leaven” might be going flat.

In 1998, Adam Riess, Saul Perlmutter, and Brian Schmidt proved that the Universe is expanding at an accelerating rate, earning the Nobel Prize.

The DESI instrument—a light analyzer of millions of distant galaxies—showed that over the past few billion years, dark energy’s strength has weakened by about 10%. By studying galaxy distributions, astronomers were surprised to find that they are not scattered randomly but arranged in concentric rings—like ripples on water from a thrown stone. This is the frozen echo of sound waves that shook the early Universe.

Now the entire recipe of the cosmic loaf is in question, where dark matter and dark energy were considered immutable ingredients. Cosmologists are trying out new recipes where the dough of space is kneaded with string-like filaments, and dark energy—like live yeast—behaves capriciously: sometimes raging, sometimes quieting down, promising a dramatic finale to the expansion.

🎯 By some estimates, dark energy makes up about 68% of all the energy in the Universe.

Scientists
Alan GuthAndrei LindeGeorges LemaîtreJames PeeblesAdam RiessBrian Schmidt
Tags
dark energy spectroscopy expansion of the universe dark matter
Laws
Friedmann equationsHubble's lawDoppler effectgravitational lensingMaxwell's equationsPlanck's law
Original: arXiv:2605.10476 · CC BY · bridge42worlds