activity
20152024
most citedHow mergers magnetise massive stars

270 citations · 622 across the 7 of their papers we have counts for

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Showing 2019Show all

5 papers · 1 filter

physics.comp-ph2019

Octopus, a computational framework for exploring light-driven phenomena and quantum dynamics in extended and finite systems

Nicolas Tancogne-Dejean, Micael J. T. Oliveira, Xavier Andrade +31

Over the last years extraordinary advances in experimental and theoretical tools have allowed us to monitor and control matter at short time and atomic scales with a high-degree of…

astro-ph.SR2019270 cited

How mergers magnetise massive stars

Fabian R. N. Schneider, Sebastian T. Ohlmann, Philipp Podsiadlowski +4

Magnetic fields are ubiquitous in the Universe. The Sun's magnetic field drives the solar wind and causes solar flares and other energetic surface phenomena that profoundly affect…

astro-ph.SR2019

Discovery of an Exceptionally Strong -Decay Transition of F and Implications for the Fate of Intermediate-Mass Stars

O. S. Kirsebom, S. Jones, D. F. Strömberg +21

A significant fraction of stars between 7-11 solar masses are thought to become supernovae, but the explosion mechanism is unclear. The answer depends critically on the rate of ele…

astro-ph.HE201953 cited

Hydrodynamical moving-mesh simulations of the tidal disruption of stars by supermassive black holes

Felipe G. Goicovic, Volker Springel, Sebastian T. Ohlmann +1

When a star approaches a black hole closely, it may be pulled apart by gravitational forces in a tidal disruption event (TDE). The flares produced by TDEs are unique tracers of oth…

astro-ph.SR201985 cited

Remnants and ejecta of thermonuclear electron-capture supernovae: Constraining oxygen-neon deflagrations in high-density white dwarfs

S. Jones, F. K. Roepke, C. Fryer +7

(Abridged) The explosion mechanism of electron-capture supernovae (ECSNe) remains equivocal. We attempt to constrain the explosion mechanism (neutron-star-forming implosion or ther…