SIMBAD references

2017A&A...601L...9G - Astronomy and Astrophysics, volume 601, L9-9 (2017/5-1)

Spatially resolved images of reactive ions in the Orion Bar.

GOICOECHEA J.R., CUADRADO S., PETY J., BRON E., BLACK J.H., CERNICHARO J., CHAPILLON E., FUENTE A. and GERIN M.

Abstract (from CDS):

We report high angular resolution (4.9''x3.0'') images of reactive ions SH+, HOC+, and SO+ toward the Orion Bar photodissociation region (PDR). We used ALMA-ACA to map several rotational lines at 0.8mm, complemented with multi-line observations obtained with the IRAM 30 m telescope. The SH+ and HOC+ emission is restricted to a narrow layer of 2''- to 10''-width (~=800 to 4000AU depending on the assumed PDR geometry) that follows the vibrationally excited H2* emission. Both ions efficiently form very close to the H/H2 transition zone, at a depth of AV≥1mag into the neutral cloud, where abundant C+, S2* coexist. SO+ peaks slightly deeper into the cloud. The observed ions have low rotational temperatures (Trot~=10-30K≪Tk) and narrow line-widths (∼2-3km/s), a factor of ~=2 narrower that those of the lighter reactive ion CH+. This is consistent with the higher reactivity and faster radiative pumping rates of CH+ compared to the heavier ions, which are driven relatively more quickly toward smaller velocity dispersion by elastic collisions and toward lower Trot by inelastic collisions. We estimate column densities and average physical conditions from an excitation model (n(H2)~=105-106cm–3, n(e)~=10cm–3, and Tk~=200K). Regardless of the excitation details, SH+ and HOC+ clearly trace the most exposed layers of the UV-irradiated molecular cloud surface, whereas SO+ arises from slightly more shielded layers.

Abstract Copyright: © ESO, 2017

Journal keyword(s): astrochemistry - line: identification - ISM: clouds - (ISM:) photon-dominated region (PDR) - (ISM:) photon-dominated region (PDR)

Simbad objects: 2

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