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Gravitational Baryogenesis: Problems and Possible Resolution

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arxiv 2301.08322 v1 pith:VPXXN3DU submitted 2023-01-19 gr-qc astro-ph.CO

classification gr-qcastro-ph.CO
keywords stabilizationbaryogenesisdifferentialequationgravitationalmechanismpossibleaction
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abstract

The coupling of baryonic current to the derivative of the curvature scalar, $R$, inherent to gravitational baryogenesis (GBG), leads to a fourth order differential equation of motion for $R$ instead of the algebraic one of General Relativity (GR). The fourth-order differential equation is generically unstable. We consider a possible mechanism of stabilization of GBG by modification of gravity, introducing an $R^2$-term into the canonical action of GR. It is shown that this mechanism allows for stabilization of GBG with bosonic and fermionic baryon currents. We have established the region of the model parameters leading to stabilization of $R$. Still, the standard cosmology would be noticeably modified.

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Cited by 1 Pith paper

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  1. Impact of a complex scalar spectator field on baryon asymmetry within spontaneous baryogenesis

    gr-qc 2025-07 conditional novelty 4.0 of 10

    A spectator scalar field coupled to the inflaton and to spacetime curvature yields a first-order correction to the baryon asymmetry in spontaneous baryogenesis, potentially enhancing it by orders of magnitude for smal...

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