SIMBAD references

2013ApJ...768...48T - Astrophys. J., 768, 48 (2013/May-1)

Dynamical fragmentation of the T Pyxidis nova shell during recurrent eruptions.

TORASKAR J., MAC LOW M.-M., SHARA M.M. and ZUREK D.R.

Abstract (from CDS):

Hubble Space Telescope images of the ejecta surrounding the nova T Pyxidis resolve the emission into more than 2000 bright knots. We simulate the dynamical evolution of the ejecta from T Pyxidis during its multiple eruptions over the last 150 years using the adaptive mesh refinement code Ramses. We demonstrate that the observed knots are the result of Richtmyer-Meshkov gas dynamical instabilities (the equivalent of Rayleigh-Taylor instabilities in an accelerated medium). These instabilities are caused by the overrunning of the ejecta from the classical nova of 1866 by fast-moving ejecta from the six subsequent recurrent nova outbursts. Magnetic fields may play a role in determining knot scale and preventing their conductive evaporation. The model correctly predicts the observed expansion and dimming of the T Pyx ejecta as well as the knotty morphology. The model also predicts that deeper, high-resolution imagery will show filamentary structure connecting the knots. We show reprocessed Hubble Space Telescope imagery that shows the first hints of such a structure.

Abstract Copyright:

Journal keyword(s): hydrodynamics - instabilities - novae, cataclysmic variables - shock waves

Simbad objects: 1

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