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Invisible Vortices of Dark Matter ⚡ экспресс

Original: "BEC vortices as an observational signature of ultra-light bosonic dark matter"
arXiv:2512.03357 · 2025-12-03 · CC BY · ⏱ 1 min · Cosmology
Giant vortices of ultralight dark matter might betray themselves by a regular pattern of bright spots in the sky.
Abstract

Ultralight bosonic dark matter (ULDM) is studied for its ability to form a Bose-Einstein condensate (BEC). By numerically solving the Gross-Pitaevskii-Poisson equations, this work demonstrates that rotating BEC-ULDM halos under Milky Way conditions spontaneously develop a vortex lattice—columns of reduced density that carry angular momentum. The gravitational lensing effects of these vortices are explored as a potentially observable signature. When vortices are large and the halo’s rotation axis aligns with the line of sight, the model predicts regularly spaced brightness anomalies—a pattern that could provide compelling evidence for this dark matter scenario.

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Dark matter is an invisible ocean that, as shown by observations by Vera Rubin, keeps stars in galaxies from flying apart. Physicists suspect that if dark matter consists of ultralight particles, in the cosmic cold it turns into a frictionless fluid — a so-called condensate. The galaxy's rotation whirls this condensate into giant whirlpools: invisible vortices stretched across thousands of light-years. Unlike whirlpools in a teacup, these structures live for billions of years, outlasting the stars themselves. Computer modeling showed that in galaxies like the Milky Way, vortices do not arrange haphazardly but form a strict hexagonal lattice, reminiscent of a honeycomb. This order is a direct consequence of quantum nature: only a unified wave can organize into a perfect pattern.

This lattice can be detected through its gravitational effect on light. Passing through a vortex, a light ray bends slightly — the effect of gravitational lensing, predicted by Albert Einstein. If a galaxy's axis points toward Earth, the bent light from distant stars creates a regular pattern of bright spots in the sky. Seeing such a pattern would give astronomers direct evidence that dark matter is indeed in a quantum condensate state.

🎯 Vortices in superfluid helium can exist indefinitely; analogous dark matter vortices can persist for billions of years.

Scientists
Albert EinsteinFritz ZwickyVera RubinRobert H. DickeJosef LenseWilliam Unruh
Tags
dark matter galaxy spacetime curvature
Laws
gravitational lensingequivalence principlevirial theoremLense–Thirring effectUnruh effectAdS/CFT correspondence
Original: arXiv:2512.03357 · CC BY · bridge42worlds