Determination of the far-infrared dust opacity in a prestellar core
Aleksi Suutarinen, Lauri K. Haikala, Jorma Harju, Mika Juvela,, Philippe Andre, Jason M. Kirk, Vera K\"onyves, Glenn J. White

TL;DR
This study measures the far-infrared dust opacity in a prestellar core by correlating near-infrared stellar color excesses with Herschel far-IR data, revealing the dust properties and effects of temperature gradients.
Contribution
It provides new estimates of dust absorption cross-sections in a prestellar core, accounting for temperature gradient biases, and compares these with previous measurements in similar environments.
Findings
The average extinction ratio A250um/AJ is approximately 0.0014.
The derived dust absorption cross-section per H nucleus is about 1.8 x 10^-25 cm^2.
Temperature gradients can cause underestimation of dust cross-sections by up to 40%.
Abstract
(abridged) We correlated near-infrared stellar H-Ks colour excesses of background stars from NTT/SOFI with the far-IR optical depth map, tauFIR, derived from Herschel 160, 250, 350, and 500 um data. The Herschel maps were also used to construct a model for the cloud to examine the effect of temperature gradients on the estimated optical depths and dust absorption cross-sections. A linear correlation is seen between the colour H-Ks and tauFIR up to high extinctions (AV ~ 25). The correlation translates to the average extinction ratio A250um/AJ = 0.0014 +/- 0.0002, assuming a standard near-infrared extinction law and a dust emissivity index beta=2. Using an empirical NH/AJ ratio we obtain an average absorption cross-section per H nucleus of sigmaH(250um) = (1.8 +/- 0.3) * 10^(-25) cm^2 / H-atom, corresponding to a cross-section per unit mass of gas kappaG(250 um) = 0.08 +/- 0.01 cm^2 / g.…
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