Turbulent Cells in Stars: I. Fluctuations in Kinetic Energy and Luminosity
arXiv:1012.1848 · doi:10.1088/0004-637X/741/1/33
Abstract
Three-dimensional (3D) hydrodynamic simulations of shell oxygen burning (Meakin and Arnett, 2007b) exhibit bursty, recurrent fluctuations in turbulent kinetic energy. These are shown to be due to a general instability of the convective cell, requiring only a localized source of heating or cooling. Such fluctuations are shown to be suppressed in simulations of stellar evolution which use mixing-length theory (MLT). Quantitatively similar behavior occurs in the model of a convective roll (cell) of Lorenz (1963), which is known to have a strange attractor that gives rise to chaotic fluctuations in time of velocity and, as we show, luminosity. Study of simulations suggests that the behavior of a Lorenz convective roll may resemble that of a cell in convective flow. We examine some implications of this simplest approximation, and suggest paths for improvement. Using the Lorenz model as representative of a convective cell, a multiple-cell model of a convective layer gives total luminosity fluctuations which are suggestive of irregular variables (red giants and supergiants (Schwarzschild 1975)), and of the long secondary period feature in semi-regular AGB variables (Stothers 2010, Wood, Olivier and Kawaler 2004). This "tau-mechanism" is a new source for stellar variability, which is inherently non-linear (unseen in linear stability analysis), and one closely related to intermittency in turbulence. It was already implicit in the 3D global simulations of Woodward, Porter and Jacobs (2003). This fluctuating behavior is seen in extended 2D simulations of CNeOSi burning shells (Arnett and Meakin 2011b), and may cause instability which leads to eruptions in progenitors of core collapse supernovae PRIOR to collapse.
30 pages, 13 figures
References in corpus (2)
Cited by in corpus (60)
- Mass Loss: Its Effect on the Evolution and Fate of High-Mass Stars
- The Sydney-AAO Multi-object Integral field spectrograph (SAMI)
- Preparing for an Explosion: Hydrodynamic Instabilities and Turbulence in Presupernovae
- A panchromatic view of the restless SN2009ip reveals the explosive ejection of a massive star envelope
- Precursors prior to Type IIn supernova explosions are common: precursor rates, properties, and correlations
- Towards Realistic Progenitors of Core-Collapse Supernovae
- Hydrodynamics of core-collapse supernovae and their progenitors
- Ejection of the massive Hydrogen-rich envelope timed with the collapse of the stripped SN2014C
- The Demographics of Broad Line Quasars in the Mass-Luminosity Plane II. Black Hole Mass and Eddington Ratio Functions
- Light Curve Modeling of Superluminous Supernova 2006gy: Collision between Supernova Ejecta and Dense Circumstellar Medium
- Interacting Supernovae: Types IIn and Ibn
- SN 2010jl: Optical to hard X-ray observations reveal an explosion embedded in a ten solar mass cocoon
- Bright, months-long stellar outbursts announce the explosion of interaction-powered supernovae
- Beyond Mixing-length Theory: a step toward 321D
- Turbulent convection in stellar interiors. III. Mean-field analysis and stratification effects
- The Bubble-like Interior of the Core-Collapse Supernova Remnant Cassiopeia A
- 3D Hydrodynamic Simulations of Carbon Burning in Massive Stars
- Shock Cooling and Possible Precursor Emission in the Early Light Curve of the Type II SN 2023ixf
- Supernovae 2016bdu and 2005gl, and their link with SN 2009ip-like transients: another piece of the puzzle
- The Period-Luminosity Relation of Red Supergiant Stars in the Small Magellanic Cloud
- SN2009ip: Constraints on the progenitor mass-loss rate
- Progenitors of Type IIb Supernovae: I. Evolutionary Pathways and Rates
- Stellar Origins of Extremely - and -enriched Presolar SiC Grains: Novae or Supernovae?
- Matter Mixing in Aspherical Core-collapse Supernovae: Three-dimensional Simulations with Single Star and Binary Merger Progenitor Models for SN 1987A
- The growth of disks and bulges during hierarchical galaxy formation. I: fast evolution vs secular processes
- X-ray selected AGN Hosts are Similar to Inactive Galaxies out to z=3: Results from CANDELS/CDF-S
- The redshift evolution of major merger triggering of luminous AGN: a slight enhancement at z2
- Dependence of Convective Boundary Mixing on Boundary Properties and Turbulence Strength
- Progenitors of early-time interacting supernovae
- Revisiting the explodability of single massive star progenitors of stripped-envelope supernovae
- PTF 13efv - An outburst 500 days prior to the SNHunt 275 explosion and its radiative efficiency
- A k-omega model for stellar turbulent convection
- Search for precursor eruptions among Type IIb supernovae
- Models of rotating massive stars: impacts of various prescriptions
- Progenitors of Type IIb Supernovae: II. Observable Properties
- Theory of stellar convection: Removing the Mixing-Length Parameter
- The clustering amplitude of X-ray selected AGN at z=0.8: Evidence for a negative dependence on accretion luminosity
- 3D Simulations and MLT: I. Renzini's Critique
- The Chandra COSMOS Legacy Survey: Clustering of X-ray selected AGN at 2.9<z<5.5 using photometric redshift Probability Distribution Functions
- No More Active Galactic Nuclei in Clumpy Disks Than in Smooth Galaxies at z~2 in CANDELS / 3D-HST
- Evidence for multiple origins of fast declining Type II supernovae from spectropolarimetry of SN 2013ej and SN 2017ahn
- Gap Transients Interacting with Circumstellar Medium
- The evolution of single B-type stars with a large angular momentum content
- Key Issues Review: Numerical studies of turbulence in stars
- Constraints on the Progenitor System of SN 2016gkg from a Comprehensive Statistical Analysis
- Searching for precursor activity of Type IIn Supernovae
- AT2018lqh and the nature of the emerging population of day-scale duration optical transients
- Early light curves of Type II supernovae interacting with a circumstellar disk
- One Year of SN 2023ixf: Breaking Through the Degenerate Parameter Space in Light-Curve Models with Pulsating Progenitors
- Peculiar Supernovae
- A non-linear mathematical model for the X-ray variability classes of the microquasar GRS 1915+105 -- I: quiescent, spiking states and QPOs
- A non-local mixing-length theory able to compute core overshooting
- Revealing the progenitor of SN 2021zby through analysis of the shock-cooling light curve
- Convective shells in the interior of Cepheid variable stars: overshooting models based on hydrodynamic simulations
- Dynamics and observational signatures of core-collapse supernovae with central engines: hydrodynamics simulations with Monte Carlo post-processing
- The bright long-lived Type II SN 2021irp powered by aspherical circumstellar material interaction (II): Estimating the CSM mass and geometry with polarimetry and light curve modeling
- 3D and Some Other Things Missing from the Theory of Massive Star Evolution
- Giant outbursts of clumpy material preceding Type II supernova 2024qiw
- The First 3D Simulations of Carbon Burning in a Massive Star
- Analytical modeling of polarization signals arising from confined circumstellar material in Type II supernovae