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An extreme Hayward black hole model rings 9.5% higher and 28% longer than Einstein’s same-mass black hole

Phys.org reports that today’s detectors cannot hear these quantum-inspired core effects.

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1 Source, 30m ago, first seen 30m ago

TLDR

Phys.org reports that an extreme Hayward black hole model rings 9.5% higher and 28% longer than Einstein’s same-mass black hole. It says today’s detectors cannot hear the quantum-inspired core effects.

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1.2K

1 Source, first seen 30m ago

4 likes1 reposts

Combined views

1.2K

1 Source, first seen 30m ago

4 likes1 reposts

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1 Source

Phys.org@physorg_comAn extreme Hayward black hole model rings 9.5% higher and 28% longer than Einstein’s same-mass black hole—but these quantum-inspired core effects cannot be heard by today’s detectors. @PhysRevD https://phys.org/news/2026-10-quantum-cores-fingerprints-black-holes.html?utm_source=twitter.com&utm_medium=social&utm_campaign=v21h
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    Phys.org@physorg_comAn extreme Hayward black hole model rings 9.5% higher and 28% longer than Einstein’s same-mass black hole—but these quantum-inspired core effects cannot be heard by today’s detectors. @PhysRevD https://phys.org/news/2026-10-quantum-cores-fingerprints-black-holes.html?utm_source=twitter.com&utm_medium=social&utm_campaign=v21h
    Today's Rank

    #16

    Today's Rank

    #16