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NEUTRINO-DRIVEN TURBULENT CONVECTION and STANDING ACCRETION SHOCK INSTABILITY in THREE-DIMENSIONAL CORE-COLLAPSE SUPERNOVAE
Ernazar Abdikamalov
, Christian D. Ott
,
David Radice
, Luke F. Roberts
, Roland Haas
, Christian Reisswig
, Philipp Mösta
, Hannah Klion
, Erik Schnetter
Physics
Research output
:
Contribution to journal
›
Article
›
peer-review
66
Scopus citations
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Dive into the research topics of 'NEUTRINO-DRIVEN TURBULENT CONVECTION and STANDING ACCRETION SHOCK INSTABILITY in THREE-DIMENSIONAL CORE-COLLAPSE SUPERNOVAE'. Together they form a unique fingerprint.
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Keyphrases
Three-dimensional (3D)
100%
Neutrinos
100%
Core-collapse Supernovae
100%
Turbulent Convection
100%
Accretion Shock
100%
Convection
33%
Convection-dominated
33%
Inertial Range
33%
Shock
16%
Energy Efficiency
16%
Oscillation
16%
Numerical Experiments
16%
Turbulence
16%
Energy Flux
16%
Hydrodynamic Simulation
16%
Energy Transport
16%
Quasi-stationary
16%
Three Dimensional Simulation
16%
Three-dimensional Dynamics
16%
Turbulent Cascade
16%
Kinetic Energy Spectrum
16%
Numerical Viscosity
16%
General Relativistic Hydrodynamics
16%
Physics
Core-Collapse Supernovae
100%
Thermodynamics
100%
Energy Spectra
20%
Kinetic Energy
20%
Enthalpy
20%
Hydrodynamics
20%
Relativistic Hydrodynamics
20%