Description
In the vicinity of neutron stars and black holes, where spacetime is strongly curved, magnetic fields can power many of the violent phenomena that we observe across the entire electromagnetic spectrum, from accretion and jet launching, to magnetar flares and pulsar emission. In the last decades, our theoretical understanding of the role of magnetic fields in these extreme environments has greatly improved through numerical simulations of magnetohydrodynamical fluids and charged kinetic particles; however, many open and important questions remain. Our observational capabilities and computational resources will keep growing dramatically in the next few years, allowing us to explore high-energy astrophysics in unprecedented regimes. Improving our knowledge of how magnetic fields, matter, and gravity interact with each other is a crucial piece in the new era of multimessenger astrophysics.
This workshop will gather experts from a wide range of disciplines within physics and astrophysics to present state-of-the-art advances in theoretical models of magnetic fields and high-energy plasma in different contexts, from neutron star mergers to supermassive black holes, and from micro scales to macro scales.
This workshop is sponsored in part by the Canadian Institute for Theoretical Astrophysics (CITA).


Scientific Organizers:
Luciano Combi (Perimeter Institute & U of Guelph)
Sean Ressler (CITA)
Bart Ripperda (CITA)
Luis Lehner (Perimeter Institute)
Will East (Perimeter Institute)
Gibwa Musoke (CITA)
Chris Thompson (CITA)

Displaying 1 - 12 of 30
Format results
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Snap, Crackle and Pop
Roger Blandford Roger Blandford
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Black Hole Jet Sheath as a Candidate for the Comptonizing Corona
Navin Sridhar Stanford University
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Workshop Talk
Luciano Combi Perimeter Institute for Theoretical Physics
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Rethinking The Black Hole Corona as an Extended, Multizone Outflow
Lia Hankla University of Maryland, College Park
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Quantifying flux rope characteristics in relativistic 3D reconnection simulations
Jesse Vos Katholieke Universiteit Leuven
PIRSA:25030133 -
Understanding Magnetic Dissipation in the Magnetar Magnetosphere Regime
Michael GrehanPIRSA:25030134 -
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