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Asymptotic Symmetries and Electromagnetic Memory
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Recent investigations into asymptotic symmetries of gauge theory and gravity have illuminated connections between gauge field zero-mode sectors, the corresponding soft factors, and their classically observable counterparts -- so called "memories." Here we complete this triad for the case of large U(1) gauge symmetries at null infinity.
Forward citations
Cited by 6 Pith papers
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Logarithmic Soft Photon Theorem and Waveform Tails in Higher Dimensions
In d>4, soft photon emission acquires a universal omega^{d-4} ln omega factor, producing power-law early- and late-time radiative tails in the classical electromagnetic waveform.
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Memory effect from the scattering of Taub-NUT black holes
Soft theorems yield a gauge-invariant nutty soft factor and the associated memory tensor for Kerr-Taub-NUT scattering, with magnetic components and directional divergences absent in electromagnetism.
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Sound as a gauge theory and its infrared triangle
Linear acoustic perturbations admit a memory effect that, in a dual Kalb-Ramond formulation, is encoded by large gauge transformations plus a monopole piece.
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Gravitational memory effects in Tachyon gravity
In tachyon gravity, the scalar field adds a breathing memory mode to gravitational waves and modifies the Bondi mass loss and soft theorems.
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Asymptotic Generation of Kerr Geometry from Schwarzschild via BMS Supertranslations
The paper claims two BMS supertranslations map Schwarzschild's asymptotic metric to a Kerr-like one, but the matching equations are inconsistent.
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Scattering Hawking Radiation
The paper re-expresses the flat-space soft photon theorem in Schwarzschild coordinates and claims a new information pathway from scattering Hawking radiation, but the redshift premise is flawed.
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