activity
20032026
most citedCrustal Entrainment and Pulsar Glitches

208 citations · 1.8k across the 55 of their papers we have counts for

collaborators
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7 papers · 1 filter

astro-ph.HE20254 cited

Stellar properties indicating the presence of hyperons in neutron stars

Andreas Bauswein, Aristeidis Nikolaidis, Georgios Lioutas +7

We describe distinctive stellar features indicating the presence of hyperons in neutron stars as compared to purely nucleonic systems. A strongly negative curvature of the mass-rad…

astro-ph.HE20255 cited

Gapless neutron superfluidity in the crust of the accreting neutron stars KS 1731-260 and MXB 1659-29

Valentin Allard, Nicolas Chamel

The interpretation of the thermal evolution of the transiently accreting neutron stars MXB 1659-29 and KS 1731-260 after an outburst is challenging, both within the traditional dee…

nucl-th20259 cited

Gapless superfluidity in neutron stars: Normal-fluid fraction

Valentin Allard, Nicolas Chamel

Our previous investigation within the time-dependent nuclear energy-density functional theory showed that the nuclear superfluids contained inside cold neutron stars could become g…

nucl-th20254 cited

Neutron Star Inner Crust at Finite Temperatures: A Comparison Between Compressible Liquid Drop and Extended Thomas-Fermi Approaches

Guilherme Grams, Nikolai N. Shchechilin, Théau Diverrès +3

We investigate the effects of temperature on the properties of the inner crust of a non-accreting neutron star. To this aim, we employ two different treatments: the compressible li…

astro-ph.HE2025

Filling fractions for the formation of nuclear pasta in neutron stars: semiclassical vs liquid-drop predictions

Nikolai N. Shchechilin, Nicolas Chamel, Andrey I. Chugunov

Historically, a sequence of nuclear pasta shapes was predicted to appear in the deepest region of the inner crust of a neutron star within the compressible liquid-drop picture, whe…

physics.plasm-ph2025

Roadmap for warm dense matter physics

Jan Vorberger, Frank Graziani, David Riley +71

This roadmap presents the state-of-the-art, current challenges and near future developments anticipated in the thriving field of warm dense matter physics. Originating from strongl…