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Cosmic Booster Solves the Hubble Riddle ⚡ экспресс

Original: "Unified dark sector and Hubble-tension alleviation in scalar-vector-tensor gravity"
arXiv:2605.14977 · 2026-05-14 · CC BY · ⏱ 1 min · General Relativity Cosmology HEP Theory
A new theory explains why the Universe expands faster today than in the past, using a field that disguises itself near Earth.
Abstract

The Universe is expanding faster than expected. A new theory explains this by a field that recently 'woke up' and acts like a tailwind for galaxies. This approach leaves the early history of the cosmos untouched and matches observations. Maybe the answer has been right under our noses all along, and we just didn't notice it?

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In the 1920s, Edwin Hubble noticed galaxies were moving apart — thus discovering the expansion of the Universe. Decades later, Adam Riess and colleagues, measuring the speed with supernova explosions, found that the Universe expands faster than predicted by measurements from its “baby pictures” — the afterglow of the Big Bang. This mismatch was dubbed the Hubble tension.

A new theory explains it using a kitchen metaphor. The Universe is like raisin dough. From the heat lingering after the initial oven burst, you could calculate how fast the raisins should move apart. But they're moving faster — as if yeast woke up in the dough billions of years later. That's exactly the hidden chameleon field scientists propose. It also adds invisible mass — like a cloud of flour weighing down the dough and keeping galaxies from falling apart.

The key trick: the field hides its strength near massive bodies, so we don't see it near Earth, but on cosmic scales it calls the shots.

Thus dark energy and dark matter turn out to be two sides of a single force, and spacetime curvature on large scales stops contradicting the early Universe.

🎯 If the Universe had expanded slower in the past, gravity would have squashed everything back; if faster, galaxies could never have formed. We exist on a knife's edge.

Scientists
Alan GuthAndrei LindeGeorges LemaîtreJames PeeblesAdam RiessBrian Schmidt
Tags
expansion of the universe dark energy dark matter spacetime curvature
Laws
Friedmann equationsHubble's lawgravitational lensingequivalence principlevirial theoremLense–Thirring effect
Original: arXiv:2605.14977 · CC BY · bridge42worlds