On the Form of the Spitzer Leavitt Law and its Dependence on Metallicity
arXiv:1306.0011 · doi:10.1088/0004-637X/772/2/130
Abstract
The form and metallicity-dependence of Spitzer mid-infrared Cepheid relations are a source of debate. Consequently, Spitzer 3.6 and 4.5 um period-magnitude and period-color diagrams were re-examined via robust routines, thus providing the reader an alternative interpretation to consider. The relations (nearly mean-magnitude) appear non-linear over an extensive baseline (0.45< logPo <2.0), particularly the period-color trend, which to first-order follows constant (3.6-4.5) color for shorter-period Cepheids and may transition into a bluer convex trough at longer-periods. The period-magnitude functions can be described by polynomials (e.g., [3.6 um]=Ko-(3.071+-0.059) logPo-(0.120+-0.032)logPo^2), and Cepheid distances computed using 3.6 and 4.5 um relations agree and the latter provides a first-order consistency check (CO sampled at 4.5 um does not seriously compromise those distances). The period-magnitude relations appear relatively insensitive to metallicity variations ([Fe/H]~0 to -0.75), a conclusion inferred partly from comparing galaxy distances established from those relations and NED-D (n>700), yet a solid conclusion awaits comprehensive mid-infrared observations for metal-poor Cepheids in IC 1613 ([Fe/H] -1). The Cepheid-based distances were corrected for dust obscuration using a new ratio (i.e., A(3.6)/E(B-V)=0.18+-0.06) deduced from GLIMPSE (Spitzer) data.
To appear in ApJ
References in corpus (6)
- A new Cepheid distance to the maser-host galaxy NGC 4258 and its implications for the Hubble Constant
- The influence of chemical composition on the properties of Cepheid stars. II-The iron content
- A new calibration of Galactic Cepheid Period-Luminosity relations from B to K bands, and a comparison to LMC PL relations
- The Discovery of Cepheids and a Distance to NGC 5128
- The Period-Luminosity Relation for the Large Magellanic Cloud Cepheids Derived from Spitzer Archival Data
- The distance to the young open cluster Westerlund 2
Cited by in corpus (8)
- Clustering of Local Group distances: publication bias or correlated measurements? I. The Large Magellanic Cloud
- Clustering of Local Group distances: publication bias or correlated measurements? III. The Small Magellanic Cloud
- Constraining Dust Extinction Properties via the VVV Survey
- Extended envelopes around Galactic Cepheids IV. T Monocerotis and X Sagittarii from mid-infrared interferometry with VLTI/MIDI
- Updated 24 Period-Luminosity Relation Derived from Galactic Cepheids
- The Milky Way as Seen by Classical Cepheids I: Distances Based on Mid-infrared Photometry
- New classical Cepheids in the inner part of the northern Galactic disk and their kinematics
- Evidence for Photometric Contamination in Key Observations of Cepheids in the Benchmark Galaxy IC 1613