2018ApJ...864...81O


Query : 2018ApJ...864...81O

2018ApJ...864...81O - Astrophys. J., 864, 81-81 (2018/September-1)

Two different grain size distributions within the protoplanetary disk around HD 142527 revealed by ALMA polarization observation.

OHASHI S., KATAOKA A., NAGAI H., MOMOSE M., MUTO T., HANAWA T., FUKAGAWA M., TSUKAGOSHI T., MURAKAWA K. and SHIBAI H.

Abstract (from CDS):

The origin of polarized emission from protoplanetary disks is uncertain. Three mechanisms have been proposed for this polarized emission: grain alignment with magnetic fields, grain alignment with radiation gradients, and self-scattering of thermal dust emission. Aiming to observationally identify the polarization mechanisms, we present ALMA polarization observations of the 0.87 mm dust continuum emission toward the circumstellar disk around HD 142527 with high spatial resolution. We confirm that the polarization vectors in the northern region are consistent with self-scattering. Furthermore, we show that the polarization vectors in the southern region are consistent with grain alignment by magnetic fields, although self-scattering cannot be ruled out. To understand the differences between the polarization mechanisms, we propose a simple grain size segregation model: small dust grains (<=100 µm) are dominant and aligned with magnetic fields in the southern region, and middle-sized (∼100 µm) grains in the upper layer emit self-scattered polarized emission in the northern region. The grain size near the middle plane in the northern region cannot be measured because the emission at 0.87 mm is optically thick. However, it can be speculated that larger dust grains (>=cm) may accumulate near this plane. These results are consistent with those of a previous analysis of the disk, in which large grain accumulation and optically thick emission from the northern region were found. This model is also consistent with theories where smaller dust grains are aligned with magnetic fields. The magnetic fields are toroidal, at least in the southern region.

Abstract Copyright: © 2018. The American Astronomical Society. All rights reserved.

Journal keyword(s): polarization - protoplanetary disks - stars: individual: HD 142527

Simbad objects: 6

goto Full paper

goto View the references in ADS

Number of rows : 6
N Identifier Otype ICRS (J2000)
RA
ICRS (J2000)
DEC
Mag U Mag B Mag V Mag R Mag I Sp type #ref
1850 - 2024
#notes
1 V* HL Tau Or* 04 31 38.5107609312 +18 13 57.859747968   15.89 14.49 14.39   K5 1423 0
2 HH 111 HH 05 51 44.2 +02 48 34           ~ 411 0
3 QSO B1424-41 QSO 14 27 56.29756617 -42 06 19.4376238   18.48 17.7 16.30   ~ 495 1
4 QSO J1512-0906 Bla 15 12 50.53293048 -09 05 59.8297908   16.74 16.54     ~ 1316 1
5 HD 142527 Ae* 15 56 41.8882637904 -42 19 23.248281828   9.04 8.34     F6III 641 1
6 ICRF J160431.0-444131 Bla 16 04 31.02074903 -44 41 31.9734699   20.75       ~ 80 0

To bookmark this query, right click on this link: simbad:objects in 2018ApJ...864...81O and select 'bookmark this link' or equivalent in the popup menu