English

Accretion Outbursts in Self-gravitating Protoplanetary Disks

Solar and Stellar Astrophysics 2015-06-22 v1

Abstract

We improve on our previous treatments of long-term evolution of protostellar disks by explicitly solving disk self-gravity in two dimensions. The current model is an extension of the one-dimensional layered accretion disk model of Bae et al. We find that gravitational instability (GI)-induced spiral density waves heat disks via compressional heating (i.e. PdVP\rm{d}V work), and can trigger accretion outbursts by activating the magnetorotational instability (MRI) in the magnetically inert disk dead-zone. The GI-induced spiral waves propagate well inside of gravitationally unstable region before they trigger outbursts at R1R \lesssim 1 AU where GI cannot be sustained. This long-range propagation of waves cannot be reproduced with the previously used local α\alpha treatments for GI. In our standard model where zero dead-zone residual viscosity (αrd\alpha_{\rm rd}) is assumed, the GI-induced stress measured at the onset of outbursts is locally as large as 0.010.01 in terms of the generic α\alpha parameter. However, as suggested in our previous one-dimensional calculations, we confirm that the presence of a small but finite αrd\alpha_{\rm rd} triggers thermally-driven bursts of accretion instead of the GI + MRI-driven outbursts that are observed when αrd=0\alpha_{\rm rd}=0. The inclusion of non-zero residual viscosity in the dead-zone decreases the importance of GI soon after mass feeding from the envelope cloud ceases. During the infall phase while the central protostar is still embedded, our models stay in a quiescent accretion phase with M˙acc108107 M yr1\dot{M}_{acc}\sim10^{-8}-10^{-7}~M_{\odot}~{\rm yr^{-1}} over 60 %60~\% of the time and spend less than 15 %15~\% of the infall phase in accretion outbursts.

Keywords

Cite

@article{arxiv.1409.3891,
  title  = {Accretion Outbursts in Self-gravitating Protoplanetary Disks},
  author = {Jaehan Bae and Lee Hartmann and Zhaohuan Zhu and Richard P. Nelson},
  journal= {arXiv preprint arXiv:1409.3891},
  year   = {2015}
}

Comments

16 pages, 17 figures, 1 table, Accepted for publication in ApJ