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Rong-Gen Cai

Researcher at Chinese Academy of Sciences

Publications -  331
Citations -  20039

Rong-Gen Cai is an academic researcher from Chinese Academy of Sciences. The author has contributed to research in topics: Black hole & Dark energy. The author has an hindex of 72, co-authored 310 publications receiving 18028 citations. Previous affiliations of Rong-Gen Cai include Kavli Institute for Theoretical Physics & Seoul National University.

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Cosmic inflation from broken conformal symmetry

TL;DR: In this article, it was shown that the Palatini quadratic gravity with a positive cosmological constant can be recovered either in the absence of a matter field or by adding the matter field in a way that preserves the local gauged conformal symmetry.
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On the Critical Behavior of Gapped Gravitational Collapse in Confined Spacetime

TL;DR: In this article, the authors investigated the mass scaling for the gapped collapse of a massless scalar field enclosed with a perfectly reflecting wall in a spacetime with a cosmological constant Λ.
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Entanglement entropy in a holographic p-wave superconductor model

TL;DR: In this paper, the authors investigated the behavior of the entanglement entropy of dual field theory in a holographic p-wave model and observed the second order, first order and zeroth order phase transitions.
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Understanding strongly coupling magnetism from holographic duality

TL;DR: A review of the applications of holographic duality in understanding unusual magnetic materials is given in this paper, where some quantitative comparision between holographic results and experimental data are shown and some predictions from holographic Duality models are discussed.
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Eccentricity of Long Inspiraling Compact Binaries Sheds Light on Dark Sirens.

TL;DR: In this paper , the authors investigated the parameter estimation of gravitational waves emitted by the eccentric compact binaries in the midfrequency (0.1-10 Hz) band, based on the configuration of one cluster of DECIGO (B-DECIGO), and simulated five types of typical compact binary in GWTC-3 with component mass ranging from O(1∼100)