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Salvatore Capozziello

Researcher at University of Naples Federico II

Publications -  994
Citations -  47545

Salvatore Capozziello is an academic researcher from University of Naples Federico II. The author has contributed to research in topics: General relativity & Dark energy. The author has an hindex of 97, co-authored 916 publications receiving 39364 citations. Previous affiliations of Salvatore Capozziello include Tomsk State University of Control Systems and Radio-electronics & Istituto Nazionale di Fisica Nucleare.

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Abelian Magnetic Monopoles and Topologically Massive Vector Bosons in Scalar-Tensor Gravity with Torsion Potential

TL;DR: In this article, a Lagrangian formulation of the electromagnetic interaction between spin-1/2 fermions and magnetic monopoles in a curved spacetime with non-minimal coupling and torsion potential is presented.
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Bounding $f(R)$ gravity by particle production rate

TL;DR: In this paper, the authors compare the Bogolubov transformations associated to different vacuum states for some $f(R)$ models and propose a method to fix the free parameters of the model by requiring that the coefficients correspondingly minimize to be in agreement with both high redshift observations and quantum field theory predictions.
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Reducing the Uncertainty on the Hubble Constant up to 35% with an Improved Statistical Analysis: Different Best-fit Likelihoods for Type Ia Supernovae, Baryon Acoustic Oscillations, Quasars, and Gamma-Ray Bursts

TL;DR: In this paper , the authors used both the traditional Gaussian likelihoods and the new best-fit likelihoods (  ) to infer cosmological parameters of nonflat Lambda cold dark matter (ΛCDM) and flat wCDM models.
Posted Content

Decoherence, Entanglement and Cosmic Evolution

TL;DR: In this article, the role played by quantum entanglement between cosmological eras was investigated, giving, as observational results, dynamical constraints on the corresponding cosmology models.
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The energy–momentum complex in non-local gravity

TL;DR: In this article , the authors generalize the Einstein gravitational energymomentum pseudotensor to non-local theories of gravity, where analytic functions of the nonlocal integral operator [formula: see text] are taken into account.