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First-principles measurement of ion and electron energization in collisionless accretion flow

1 Pith paper cite this work, alongside 1 external citations. Polarity classification is still indexing.

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abstract

We present the largest 3D Particle-in-Cell shearing-box simulations of turbulence driven by the magnetorotational instability, for the first time employing the realistic proton-to-electron mass ratio. We investigate the energy partition between relativistically hot electrons and subrelativistic ions in turbulent accretion flows, a regime relevant to collisionless, radiatively inefficient accretion flows of supermassive black holes, such as those targeted by the Event Horizon Telescope. We provide a simple empirical formula to describe the measured heating ratio between ions and electrons, which can be used for more accurate global modeling of accretion flows with standard fluid approaches such as general-relativistic magnetohydrodynamics.

fields

astro-ph.GA 1

years

2025 1

verdicts

CONDITIONAL 1

representative citing papers

A visual approach to global accretion disk instabilities

astro-ph.GA · 2025-07-30 · conditional · novelty 6.0

Linear superpositions of SARI eigenmodes in global disk models produce spiral, vertically displaced field structures and alpha values in the 0.007 to 0.08 range without nonlinear saturation.

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  • A visual approach to global accretion disk instabilities astro-ph.GA · 2025-07-30 · conditional · none · ref 33 · internal anchor

    Linear superpositions of SARI eigenmodes in global disk models produce spiral, vertically displaced field structures and alpha values in the 0.007 to 0.08 range without nonlinear saturation.