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Black hole vortex shifts quantum rhythm ⚡ экспресс

Original: "Aharonov-Bohm Effect for Cooper Pairs in Kerr Spacetime: Gravitomagnetic Phase Shifts from Frame Dragging"
· Erdem Sucu, İzzet Sakallı
arXiv:2602.20337 · 2026-02-23 · CC BY 4.0 · ⏱ 1 min · General Relativity HEP Theory
Calculations show that a black hole's spin can dramatically alter a superconductor's internal rhythm.
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A spinning black hole drags space with it, like a spoon stirring thick honey. It turns out this cosmic vortex can shift the quantum rhythm of superconducting matter by a monstrous amount — as if a clock hand made billions of rotations. Someday this will help connect the world of gravity and the world of quantum.

🎯 This shift is so huge that it would correspond to 10²³ full turns — trillions of times more than the number of stars in our Galaxy.

🎬 In the movie Interstellar, the characters saw how the black hole Gargantua twists space itself.

\Delta\theta = \frac{4\pi m^* M a}{\hbar} \left(\frac{1}{r_2} - \frac{1}{r_1}\right)
Δθ — phase shift (wave rhythm shift), m* — mass of the electron pair flowing without resistance (twice the electron mass), M — black hole mass, a — its spin parameter, ħ — fundamental quantum constant, r₁ and r₂ — distances from the black hole to the measuring device.
Scientists
Stephen HawkingJacob BekensteinAlbert EinsteinFritz ZwickyVera RubinBernhard Riemann
Tags
black hole spacetime curvature
Laws
Hawking radiationgravitational lensingBekenstein-Hawking entropyEinstein field equationsequivalence principleno-hair theorem
Original: arXiv:2602.20337 · CC BY 4.0 · bridge42worlds