Advanced

Warm Emptiness Instead of Dark Energy ⚡ экспресс

Original: "Thermal Vacuum Cosmology Explains Hubble Tension"
· Robert Alicki
arXiv:2602.08522 · 2026-02-09 · CC BY · ⏱ 1 min · General Relativity Cosmology
The expansion of the Universe may be driven by heat, not a mysterious constant.
Abstract

A previously proposed modification of the standard flat inflationary ΛCDM model, where the cosmological constant is replaced by the thermal energy of the expanding vacuum characterized by the Gibbons-Hawking temperature, explains the origin of the well-known 'Hubble tension'. In this framework, vacuum energy ceases to be constant and acquires a dependence on the event horizon, naturally resolving the discrepancy between Hubble constant values derived from early Universe data (cosmic microwave background) and late-time observations (supernovae). The method is based on a thermodynamic interpretation of quantum effects near the horizon. The proposed model does not require additional dark entities and agrees with existing cosmological constraints. The result points to a possible connection between quantum gravity and observational cosmology.

Links in the knowledge graph 1

📄 Showing the "Simple" version — "Advanced" is not ready yet. Add it to favorites to help prioritize it.

In the standard cosmological model ΛCDM, galaxies recede under the pressure of dark energy — an invisible spring. However, different methods of measuring the expansion rate give different numbers, as if the ruler's scale is off. This discrepancy was noticed by Edwin Hubble almost a century ago.

A new study proposes an alternative: replace the spring with heat. Emptiness is not empty — according to calculations by Stephen Hawking and Gary Gibbons, the boundary of the visible world, the cosmic horizon, has a tiny temperature. This heat presses from within, and the wider the horizon, the higher the temperature. Expansion becomes a thermal breath: an exhalation of heat expands space.

Unexpected twist: the Universe is not cooling but heating up. The horizon's thermal energy grows, spurring the outward rush. Thus, there's no need for a mysterious constant — the heat of its own boundaries is enough. Big Bang turns out not to be a push from the past, but the kindling heat of the present.

🎯 The temperature of the cosmic horizon is about 10⁻²⁹ Kelvin — billions of times colder than the coldest point ever created by humans.

🎬 Science fiction writers sometimes talk about a 'warm Universe' with an inner fire — here it gets a scientific basis.

Scientists
Alan GuthAndrei LindeGeorges LemaîtreJames PeeblesAdam RiessBrian Schmidt
Tags
dark energy expansion of the universe Standard Model big bang
Laws
Friedmann equationsHubble's lawNoether's theoremEinstein field equationsPlanck's lawspin–statistics theorem
Original: arXiv:2602.08522 · CC BY · bridge42worlds