S
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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Nonlocal Teleparallel Cosmology
TL;DR: In this paper, nonlocal deformations of Teleparallel gravity along with its cosmological solutions were studied and it was shown that nonlocal Teleparparallel Gravity (like nonlocal General Relativity) is consistent with the present cosmology data obtained by SNe Ia + BAO + CC + $H_0$ observations.
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A new method for the estimate of H_0 from quadruply imaged gravitational lens systems
TL;DR: In this article, a method to estimate the Hubble constant H 0 from the measured time delays in quadruply imaged gravitational lens systems is presented, without the need to completely reconstruct the lensing potential, thus avoiding any a priori hypotheses on the expression of the galaxy lens model.
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Noether symmetries in Symmetric Teleparallel Cosmology
Konstantinos F. Dialektopoulos,Konstantinos F. Dialektopoulos,Konstantinos F. Dialektopoulos,Tomi S. Koivisto,Tomi S. Koivisto,Tomi S. Koivisto,Salvatore Capozziello +6 more
TL;DR: In this article, a general theory of all possible quadratic, first-order derivative terms of the non-metricity tensor in the framework of Symmetric Teleparallel Geometry is considered.
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Scale factor duality and general transformations for string cosmology
TL;DR: In this article, the scale factor duality of a class of nonminimally coupled gravitational Lagrangians is derived for string-dilaton cosmology, including the tree-level effective Lagrangian.
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Hamiltonian dynamics and Noether symmetries in Extended Gravity Cosmology
TL;DR: In this article, the Hamiltonian dynamics for cosmologies coming from Extended Theories of Gravity are discussed and the existence of conserved quantities gives a selection rule to recover classical behaviors in cosmic evolution according to the so called Hartle criterion, that allows to select correlated regions in the configuration space of dynamical variables.