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From the 1 of 19 linked papers with an AI index.

most citedRobust Preference for Dark Sector Interactions

1 citations · 2 across the 3 of their papers we have counts for

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19 papers

astro-ph.CO20261 cited

Robust Preference for Dark Sector Interactions

Tian-Nuo Li, William Giarè, Guo-Hong Du +4

The paper investigates whether interactions between dark matter and dark energy can explain recent DESI BAO observations, finding strong statistical evidence for such interactions…

astro-ph.CO2026

Model-independent late-universe measurements of and with the parametrization based on cosmic age-improved inverse distance ladder

Guo-Hong Du, Tian-Nuo Li, Jia-Le Ling +3

The standard model has encountered serious challenges and the tension has become more significant with increasingly precise cosmological observations. Meanwhile,…

astro-ph.CO2026

Neutrino mass constraints in the Schwarzschild-de Sitter black-hole dark energy model with ACT DR6 and DESI DR2 data

Sheng-Han Zhou, Tian-Nuo Li, Guo-Hong Du +4

Recent DESI observations have posed new challenges to CDM, showing a preference for dynamical dark energy and yielding neutrino mass constraints within CDM that approach th…

astro-ph.CO20261 cited

Alleviating the tension through the interacting dark energy model from quantum gravitational field theory in light of DESI DR2

Yi-Min Zhang, Tian-Nuo Li, Guo-Hong Du +4

Recent DESI DR2 data has shown a significant preference for dynamical dark energy, yet this has further exacerbated the tension. In this work, we explore the potential of int…

astro-ph.CO2026

Metastability in Emergent Dark Energy: A New Framework Confronting Cosmological Observations

Xiaolei Li, Tonghua Liu, Tian-Nuo Li +3

We propose the Metastable Emergent Dark Energy (MEDE) model, a novel phenomenological extension of the Phenomenological (PEDE) and Generalized (GEDE) Emergent Dark Energy framework…

astro-ph.CO2026

Neutrino mass constraints in interacting dark energy models after DESI DR2

Hui Li, Guo-Hong Du, Tian-Nuo Li +4

Recent DESI observations indicate a deviation from the CDM model, showing a preference for dynamical dark energy and thereby relaxing the upper limit on the neutrino mass withi…