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3 Pith papers cite this work. Polarity classification is still indexing.

3 Pith papers citing it

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fields

hep-th 3

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2026 3

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UNVERDICTED 3

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background 2

polarities

background 1 unclear 1

representative citing papers

Five-dimensional Geometry from Spinning Amplitudes

hep-th · 2026-05-28 · unverdicted · novelty 7.0

The classical limit of five-dimensional spinning amplitudes reproduces the multipole expansion of five-dimensional black holes after augmenting with the Hodge dual of the spin tensor, and identifies amplitudes corresponding to the Myers-Perry solution.

Gravitational multipoles from scattering amplitudes in higher dimensions

hep-th · 2026-05-06 · unverdicted · novelty 6.0

In five dimensions, minimally coupled massive vector and antisymmetric tensor fields produce only mass or stress quadrupoles respectively from scattering amplitudes, failing to match the Myers-Perry black hole and demonstrating breakdown of spin universality.

citing papers explorer

Showing 3 of 3 citing papers.

  • Five-dimensional Geometry from Spinning Amplitudes hep-th · 2026-05-28 · unverdicted · none · ref 91

    The classical limit of five-dimensional spinning amplitudes reproduces the multipole expansion of five-dimensional black holes after augmenting with the Hodge dual of the spin tensor, and identifies amplitudes corresponding to the Myers-Perry solution.

  • Gravitational multipoles from scattering amplitudes in higher dimensions hep-th · 2026-05-06 · unverdicted · none · ref 11

    In five dimensions, minimally coupled massive vector and antisymmetric tensor fields produce only mass or stress quadrupoles respectively from scattering amplitudes, failing to match the Myers-Perry black hole and demonstrating breakdown of spin universality.

  • NLO Angular Impulse and Leading Singularities to all orders in spin for Kerr Black Holes hep-th · 2026-06-22 · unverdicted · none · ref 200

    NLO angular impulse for Kerr black holes computed to all orders in spin via KMOC formalism and leading singularities, with consistency checks and potential extraction.