English

Constraining accretion signatures of exoplanets in the TW Hya transitional disk

Earth and Planetary Astrophysics 2017-08-23 v1

Abstract

We present a near-infrared direct imaging search for accretion signatures of possible protoplanets around the young stellar object (YSO) TW Hya, a multi-ring disk exhibiting evidence of planet formation. The Paβ\beta line (1.282 μ\mum) is an indication of accretion onto a protoplanet, and its intensity is much higher than that of blackbody radiation from the protoplanet. We focused on the Paβ\beta line and performed Keck/OSIRIS spectroscopic observations. Although spectral differential imaging (SDI) reduction detected no accretion signatures, the results of the present study allowed us to set 5σ\sigma detection limits for Paβ\beta emission of 5.8×10185.8\times10^{-18} and 1.5×10181.5\times10^{-18} erg/s/cm2^2 at 0\farcs4 and 1\farcs6, respectively. We considered the mass of potential planets using theoretical simulations of circumplanetary disks and hydrogen emission. The resulting masses were 1.45±0.041.45\pm 0.04 MJ_{\rm J} and 2.290.04+0.032.29 ^{+0.03}_{-0.04} MJ_{\rm J} at 25 and 95 AU, respectively, which agree with the detection limits obtained from previous broadband imaging. The detection limits should allow the identification of protoplanets as small as \sim1 MJ_{\rm J}, which may assist in direct imaging searches around faint YSOs for which extreme adaptive optics instruments are unavailable.

Keywords

Cite

@article{arxiv.1707.06337,
  title  = {Constraining accretion signatures of exoplanets in the TW Hya transitional disk},
  author = {Taichi Uyama and Takayuki Tanigawa and Jun Hashimoto and Motohide Tamura and Yuhiko Aoyama and Timothy D. Brandt and Masato Ishizuka},
  journal= {arXiv preprint arXiv:1707.06337},
  year   = {2017}
}

Comments

6 pages, 3 figures, accepted for publication in AJ