A new N=1 D=4 supersymmetric gauge model uses a Kalb-Ramond Lorentz-violating background and Fayet-Iliopoulos term to dynamically induce the Aharonov-Casher dipole interaction without breaking supersymmetry.
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LISA can constrain the Lorentz symmetry breaking parameter ell in bumblebee gravity to O(10^{-4}) uncertainty via EMRI waveform analysis in the AAK framework.
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Aharonov--Casher effect from a supersymmetric N=1 D=4 model with Kalb--Ramond Lorentz-violating background: a SUSY-preserving mechanism via the Fayet--Iliopoulos term
A new N=1 D=4 supersymmetric gauge model uses a Kalb-Ramond Lorentz-violating background and Fayet-Iliopoulos term to dynamically induce the Aharonov-Casher dipole interaction without breaking supersymmetry.
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Constraining Lorentz symmetry breaking in bumblebee gravity with extreme mass-ratio inspirals
LISA can constrain the Lorentz symmetry breaking parameter ell in bumblebee gravity to O(10^{-4}) uncertainty via EMRI waveform analysis in the AAK framework.