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Bottomless Black Hole: A Quantum Recipe express

Original: "Quantum resolution of the Schwarzschild singularity"
arXiv:2605.13508 · 2026-05-13 · CC BY · 1 min · General Relativity HEP Theory Quantum Physics
Quantum particles turn the interior of a black hole into a springy trampoline, preventing space from collapsing into a point.
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Quantum particles don't want to fall into a black hole’s singularity. They seem to find a secret detour: instead of infinite compression, the space around them becomes springy. This isn’t magic—it’s quantum mechanics: pilot waves alter the geometry, making the black hole’s center traversable. Perhaps hidden inside a black hole is not a point, but an entire universe.

🎯 Bohm’s pilot waves act like invisible guides: even inside a black hole, a particle 'knows' the exact route, like a ball rolling along hidden rails.

🎬 Science fiction writers have long dreamed of black holes as portals to other worlds. This hypothesis brings that dream a step closer to reality.

Scientists
Stephen HawkingJacob BekensteinAlbert EinsteinFritz ZwickyVera RubinBernhard Riemann
Tags
black hole spacetime curvature gravitational waves
Laws
Hawking radiationgravitational lensingBekenstein-Hawking entropyEinstein field equationsequivalence principleno-hair theorem
Original: arXiv:2605.13508 · CC BY · bridge42worlds