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Supernova Feedback in an Inhomogeneous Interstellar Medium

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arxiv 1409.4425 v3 pith:RSLSMI2N submitted 2014-09-15 astro-ph.GA astro-ph.CO

classification astro-ph.GAastro-ph.CO
keywords feedbacksimulationsenergysnrsmediumsupernovathermaldensity
verification ladder T0 review T1 audit T2 compute T3 formal
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Supernova (SN) feedback is one of the key processes shaping the interstellar medium (ISM) of galaxies. SNe contribute to (and in some cases may dominate) driving turbulence in the ISM and accelerating galactic winds. Modern cosmological simulations have sufficient resolution to capture the main structures in the ISM of galaxies, but are typically still not capable of explicitly resolving all of the small-scale stellar feedback processes, including the expansion of supernova remnants (SNRs). We perform a series of controlled three-dimensional hydrodynamic (adaptive mesh refinement) simulations of single SNRs expanding in an inhomogeneous density field with statistics motivated by those of the turbulent ISM. We use these to quantify the momentum and thermal energy injection from SNe as a function of spatial scale and the density, metallicity, and structure of the ambient medium. We develop a series of analytic formulae that we fit to the simulations. These formulae can be used as a basis for a more predictive sub-resolution model for SN feedback for galaxy formation simulations. We then use simulations of multiple, stochastically driven SNe that resolve the key phases of SNRs to test the sub-resolution model, and show that it accurately captures the turbulent kinetic energy and thermal energy in the ISM. By contrast, proposed SN feedback models in the literature based on `delayed cooling' significantly overpredict the late-time thermal energy and momentum in SNRs.

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Cited by 2 Pith papers

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  1. Jet--ISM Interactions in Gaseous Disks: Simulating Kinetic Feedback in the Radio Galaxy 3C 326 N

    astro-ph.GA 2026-07 conditional novelty 6.0 of 10

    Jet–ISM coupling in multi-scale cloudy disks produces asymmetric lobes and kinematics that match the JWST-observed bubble in 3C 326 N for a 10^45 erg s^{-1} jet.

  2. The role of major mergers in triggering super-Eddington accretion

    astro-ph.GA 2026-06 unverdicted novelty 4.0 of 10

    High-resolution cosmological zoom-in simulations find that major mergers do not trigger sustained super-Eddington black hole accretion in low-mass halos when feedback is included; episodes occur only immediately after...

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