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The Holographic dark energy reexamined

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abstract

We have reexamined the holographic dark energy model by considering the spatial curvature. We have refined the model parameter and observed that the holographic dark energy model does not behave as phantom model. Comparing the holographic dark energy model to the supernova observation alone, we found that the closed universe is favored. Combining with the Wilkinson Microwave Anisotropy Probe (WMAP) data, we obtained the reasonable value of the spatial curvature of our universe.

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Black Holes Thermodynamics and Generalised Non-Extensive Entropy

gr-qc · 2025-02-09 · conditional · novelty 4.0

For Schwarzschild black holes, generalized non-extensive entropies such as Rényi, Tsallis, and four- and five-parameter forms cannot reproduce both the Hawking temperature and the ADM mass; only the Bekenstein-Hawking entropy satisfies both.

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  • Black Holes Thermodynamics and Generalised Non-Extensive Entropy gr-qc · 2025-02-09 · conditional · none · ref 67 · internal anchor

    For Schwarzschild black holes, generalized non-extensive entropies such as Rényi, Tsallis, and four- and five-parameter forms cannot reproduce both the Hawking temperature and the ADM mass; only the Bekenstein-Hawking entropy satisfies both.