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D = 1 Supergravity and Spinning Particles

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arxiv hep-th/9510021 v2 pith:EV3KGK73 submitted 1995-10-05 hep-th

classification hep-th
keywords supersymmetryconstructionfieldslocalmodelsnon-linearparticlesrealization
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abstract

In this paper I review the multiplet calculus of $N = 1$, $D = 1$ local supersymmetry with applications to the construction of models for spinning particles in background fields, and models with space-time supersymmetry. New features include a non-linear realization of the local supersymmetry algebra and the coupling to anti-symmetric tensor fields of both odd and even rank. The non-linear realization allows the construction of a $D = 1$ cosmological-constant term, which provides a mass term in the equations of motion.

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  1. Bulk-boundary entanglement correspondence and the Ryu-Takayanagi conjecture in an $AdS_2/CFT_1$ setup

    hep-th 2025-02 conditional novelty 4.0 of 10

    For a free scalar plus Majorana field in AdS2, boundary thermofield-double entanglement entropy matches, up to additive constants, the bulk horizon entanglement entropy and the log of a near-boundary geodesic length.

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