Reddening and Extinction Toward the Galactic Bulge from OGLE-III: The Inner Milky Way's Rv ~ 2.5 Extinction Curve
David M. Nataf, Andrew Gould, Pascal Fouqu\'e, Oscar A. Gonzalez,, Jennifer A. Johnson, Jan Skowron, Andrzej Udalski, Micha{\l} K. Szyma\'nski,, Marcin Kubiak, Grzegorz Pietrzy\'nski, Igor Soszy\'nski, Krzysztof Ulaczyk,, {\L}ukasz Wyrzykowski, Rados{\l}aw Poleski

TL;DR
This study combines optical and infrared data to characterize the non-standard extinction law toward the Galactic bulge, revealing an Rv ~ 2.5 extinction curve and deriving key structural parameters of the bulge.
Contribution
It provides a detailed measurement of the extinction law and structural parameters of the Galactic bulge using combined OGLE-III, VVV, and 2MASS data, resolving previous discrepancies.
Findings
Extinction law follows Rv ~ 2.5 with ~0.2 dispersion.
Distance to Galactic center is estimated at 8.20 kpc.
Bulge stellar mass is approximately 2.0 x 10^{10} solar masses.
Abstract
We combine VI photometry from OGLE-III with VVV and 2MASS measurements of E(J-K_{s}) to resolve the longstanding problem of the non-standard optical extinction toward the Galactic bulge. We show that the extinction is well-fit by the relation A_{I} = 0.7465*E(V-I) + 1.3700*E(J-K_{s}), or, equivalently, A_{I} = 1.217*E(V-I)(1+1.126*(E(J-K_{s})/E(V-I)-0.3433)). The optical and near-IR reddening law toward the inner Galaxy approximately follows an R_{V} \approx 2.5 extinction curve with a dispersion {\sigma}_{R_{V}} \approx 0.2, consistent with extragalactic investigations of the hosts of type Ia SNe. Differential reddening is shown to be significant on scales as small as as our mean field size of 6', with the 1{\sigma} dispersion in reddening averaging 9% of total reddening for our fields. The intrinsic luminosity parameters of the Galactic bulge red clump (RC) are derived to be…
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