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2026 年 6 月 12 日 星期五 · 数据截至 arXiv / ADS 最新收录日
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优先级 5 · 理论物理

Accelerating electrically charged ModMax black hole solutions in $F(R)$ gravity

B. Eslam Panah, N. Heidari, A. Rincón

原文摘要Abstract

Using the $C-$metric in the context of $F(R)$ gravity coupled with the ModMax nonlinear electromagnetic field (the $F(R)-$ModMax theory), we derive an exact black hole solution in a four-dimensional spacetime. We then examine how various parameters influence the behavior of accelerating ModMax black holes. Treating this black hole as a thermodynamic system, we calculate the Hawking temperature and entropy for the accelerating ModMax black holes within the framework of $F(R)$ gravity. Subsequently, we explore the impact of the parameters in $F(R)-$ModMax theory on the Hawking temperature and entropy. We also assess local stability by analyzing the heat capacity. Additionally, we investigate both the angular shadow and the shadow radius of an accelerating black hole in the context of $F(R)-$ModMax gravity.

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$F(R)$引力中加速带电ModMax黑洞解 · 在F(R)-ModMax理论框架下,推导了加速带电ModMax黑洞解,并研究了参数对霍金温度、熵、稳定性和阴影的影响。

预印本 2026-07-17 · 接收 2026-06-12 · 刊出 2026-06-25 · 收录 2026-07-20

优先级 5

No preference for generalized emergent dark energy from current cosmological data

Vipin Kumar Sharma, Himanshu Chaudhary, Salvatore Capozziello, et al.

原文摘要Abstract

In this work, we revisit the generalized emergent dark energy model by confronting it with DESI DR2 baryon acoustic oscillation measurements, in combination with joint CMB data from ACT, SPT, and Planck, as well as Type Ia supernova samples including Pantheon$^+$, DES-Dovekie, and Union3. We find that the GEDE model remains compatible with the $Λ$CDM paradigm, with no statistically significant preference for deviations when all datasets are combined. In particular, the key model parameter $Δ$ is consistent with the $Λ$CDM value $Δ= 0$ within $2σ$ once SNe Ia data are included. Despite this overall agreement, the GEDE model does not exhibit the phantom crossing suggested by DESI DR2. Instead, the evolution of the dark energy equation of state $w(z)$ indicates that the model behaves either as a full phantom ($w < -1$) or quintessence ($w > -1$), depending on the dataset combination, without a clear transition across $w = -1$. When Pantheon$^+$ data are included, the model converges closely to $Λ$CDM with $w \simeq -1$. The GEDE model does not alleviate the existing cosmological tensions. The inferred values of $H_0$ remain in the range $67.9$-$69.8\ \mathrm{km,s^{-1},Mpc^{-1}}$, while the sound horizon $r_d$ and clustering parameter $S_8$ remain consistent with $Λ$CDM, failing to resolve the $H_0$ and $S_8$ tensions. Finally, both Gaussian significance levels ($<2σ$) and Bayesian evidence ($\ln B_{i,j} < 1$) indicate no statistically significant preference for GEDE over $Λ$CDM. We conclude that, although DESI DR2 hints at dynamical dark energy, the GEDE model remains observationally indistinguishable from $Λ$CDM and does not support the Quintom-B-type behavior suggested by DESI DR2.

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当前宇宙学数据不偏好广义涌现暗能量 · 用DESI DR2等多类数据检验广义涌现暗能量模型,发现其与ΛCDM无显著差异,不支持动力学暗能量。

预印本 2026-07-28 · 刊出 2026-06-12 · 收录 2026-07-29