English

Constraining Dust Extinction Properties via the VVV Survey

Astrophysics of Galaxies 2016-10-12 v1

Abstract

Near-infrared color-excess and extinction ratios are essential for establishing the cosmic distance scale and probing the Galaxy, particularly when analyzing targets attenuated by significant dust. A robust determination of those ratios followed from leveraging new infrared observations from the VVV survey, wherein numerous bulge RR Lyrae and Type II Cepheids were discovered, in addition to BVJHKs(3.422)μmBVJHK_{s}(3.4\rightarrow22)\mu m data for classical Cepheids and O-stars occupying the broader Galaxy. The apparent optical color-excess ratios vary significantly with Galactic longitude (\ell), whereas the near-infrared results are comparatively constant with \ell and Galactocentric distance (E(J3.5μm)/E(JKs)=1.28±0.03\langle E(J-\overline{3.5\mu m})/E(J-K_s) \rangle =1.28\pm0.03). The results derived imply that classical Cepheids and O-stars display separate optical trends (RV,BVR_{V,BV}) with \ell, which appear to disfavor theories advocating a strict and marked decrease in dust size with increasing Galactocentric distance. The classical Cepheid, Type II Cepheid, and RR Lyrae variables are characterized by AJ/E(JKs)=RJ,JKs=1.49±0.05\langle A_{J}/E(J-K_s) \rangle = \langle R_{J,JK_s} \rangle =1.49\pm0.05 (AKs/AJ=0.33±0.02\langle A_{K_s}/A_J \rangle =0.33\pm0.02), whereas the O-stars are expectedly impacted by emission beyond 3.6μm3.6 \mu m. The mean optical ratios characterizing classical Cepheids and O-stars are approximately RV,BV3.1\langle R_{V,BV} \rangle \sim3.1 and RV,BV3.3\langle R_{V,BV} \rangle \sim3.3, respectively.

Keywords

Cite

@article{arxiv.1607.08623,
  title  = {Constraining Dust Extinction Properties via the VVV Survey},
  author = {D. Majaess and D. Turner and I. Dekany and D. Minniti and W. Gieren},
  journal= {arXiv preprint arXiv:1607.08623},
  year   = {2016}
}

Comments

To appear in Astronomy and Astrophysics

R2 v1 2026-06-22T15:07:13.154Z