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Constraining properties of the next nearby core-collapse supernova with multi-messenger signals: multi-messenger signals

Authors: Warren, MacKenzie; Couch, Sean; O'Connor, Evan; Morozova, Viktoriya;

Constraining properties of the next nearby core-collapse supernova with multi-messenger signals: multi-messenger signals

Abstract

1D FLASH simulations with STIR, for alpha_lambda = 1.23, 1.25, and 1.27. Run with SFHo EOS, M1 with 12 energy groups. For more information on these simulations, see Warren, Couch, O'Connor, & Morozova (arXiv:1912.03328) and Couch, Warren, & O'Connor (2020). Includes the multi-messenger data from the STIR simulations. The filename indicates the turbulent mixing parameter a and progenitor mass m of the simulation. Columns are time [s], shock radius [cm], explosion energy [ergs], electron neutrino mean energy [MeV], electron neutrino rms energy [MeV], electron neutrino luminosity [10^51 ergs/s], electron antineutrino mean energy [MeV], electron antineutrino rms energy [MeV], electron antineutrino luminosity [10^51 ergs/s], x neutrino mean energy [MeV], x neutrino rms energy [MeV], x neutrino luminosity [10^51 ergs/s], gravitational wave frequency from eigenmode analysis of the protoneutron star structure [Hz]. Note that the x neutrino luminosity is for one neutrino flavor - to get the total mu/tau neutrino and antineutrino luminosities requires multiplying this number by 4. v1.1 - removed unnecessary duplicate files v1.2 - packaging alpha values as separate tar files for easy download.

This work was funded by the NSF under award number AST-1801844, the US Department of Energy, Office of Science, Office of Nuclear Physics, under award numbers DE-SC0015904 and DE-SC0017955, and the Swedish Research Council under award number 2018-04575. This work was done using computational resources provided by the Michigan State University Institute for Cyber-Enabled Research.

{"references": ["Warren, Couch, O'Connor, & Morozova. \"Constraining properties of the next nearby core-collapse supernova with multi-messenger signals.\" Submitted to Ap.J. arXiv:1912.03328", "Couch, Warren, & O'Connor. \"Simulating turbulence-aided neutrino-driven core-collapse supernova explosions in one dimension.\" Ap.J. 890:2 (2020). arXiv:1902.01340"]}

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popularity
This indicator reflects the "current" impact/attention (the "hype") of an article in the research community at large, based on the underlying citation network.
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