English

Inferring possible magnetic field strength of accreting inflows in EXor-type objects from scaled laboratory experiments

Solar and Stellar Astrophysics 2021-04-21 v1 High Energy Astrophysical Phenomena

Abstract

Aims. EXor-type objects are protostars that display powerful UV-optical outbursts caused by intermittent and powerful events of magnetospheric accretion. These objects are not yet well investigated and are quite difficult to characterize. Several parameters, such as plasma stream velocities, characteristic densities, and temperatures, can be retrieved from present observations. As of yet, however, there is no information about the magnetic field values and the exact underlying accretion scenario is also under discussion. Methods. We use laboratory plasmas, created by a high power laser impacting a solid target or by a plasma gun injector, and make these plasmas propagate perpendicularly to a strong external magnetic field. The propagating plasmas are found to be well scaled to the presently inferred parameters of EXor-type accretion event, thus allowing us to study the behaviour of such episodic accretion processes in scaled conditions. Results. We propose a scenario of additional matter accretion in the equatorial plane, which claims to explain the increased accretion rates of the EXor objects, supported by the experimental demonstration of effective plasma propagation across the magnetic field. In particular, our laboratory investigation allows us to determine that the field strength in the accretion stream of EXor objects, in a position intermediate between the truncation radius and the stellar surface, should be of the order of 100 gauss. This, in turn, suggests a field strength of a few kilogausses on the stellar surface, which is similar to values inferred from observations of classical T Tauri stars.

Keywords

Cite

@article{arxiv.2102.08156,
  title  = {Inferring possible magnetic field strength of accreting inflows in EXor-type objects from scaled laboratory experiments},
  author = {K. Burdonov and R. Bonito and T. Giannini and N. Aidakina and C. Argiroffi and J. Beard and S. N. Chen and A. Ciardi and V. Ginzburg and K. Gubskiy and V. Gundorin and M. Gushchin and A. Kochetkov and S. Korobkov and A. Kuzmin and A. Kuznetsov and S. Pikuz and G. Revet and S. Ryazantsev and A. Shaykin and I. Shaykin and A. Soloviev and M. Starodubtsev and A. Strikovskiy and W. Yao and I. Yakovlev and R. Zemskov and I. Zudin and E. Khazanov and S. Orlando and J. Fuchs},
  journal= {arXiv preprint arXiv:2102.08156},
  year   = {2021}
}