2020A&A...640A..92M


C.D.S. - SIMBAD4 rel 1.7 - 2020.10.26CET14:43:15

2020A&A...640A..92M - Astronomy and Astrophysics, volume 640A, 92-92 (2020/8-1)

Using classical Cepheids to study the far side of the Milky Way disk. I. Spectroscopic classification and the metallicity gradient.

MINNITI J.H., SBORDONE L., ROJAS-ARRIAGADA A., ZOCCALI M., CONTRERAS RAMOS R., MINNITI D., MARCONI M., BRAGA V.F., CATELAN M., DUFFAU S., GIEREN W. and VALCARCE A.A.R.

Abstract (from CDS):


Context. Much of what we know about the Milky Way disk is based on studies of the solar vicinity. The structure, kinematics, and chemical composition of the far side of the Galactic disk, beyond the bulge, are still to be revealed.
Aims. Classical Cepheids (CCs) are young and luminous standard candles. We aim to use a well-characterized sample of these variable stars to study the present-time properties of the far side of the Galactic disk.
Methods. A sample of 45 Cepheid variable star candidates were selected from near-infrared time series photometry obtained by the VVV survey. We characterized this sample using high quality near-infrared spectra obtained with VLT/X-shooter. The spectroscopic data was used to derive radial velocities and iron abundances for all the sample Cepheids. This allowed us to separate the CCs, which are metal rich and with kinematics consistent with the disk rotation, from type II Cepheids (T2Cs), which are more metal poor and with different kinematics.
Results. We estimated individual distances and extinctions using VVV photometry and period-luminosity relations, reporting the characterization of 30 CCs located on the far side of the Galactic disk, plus 8 T2Cs mainly located in the bulge region, of which 10 CCs and 4 T2Cs are new discoveries. The remaining seven stars are probably misclassified foreground ellipsoidal binaries. This is the first sizeable sample of CCs in this distant region of our Galaxy that has been spectroscopically confirmed. We use their positions, kinematics, and metallicities to confirm that the general properties of the far disk are similar to those of the well-studied disk on the solar side of the Galaxy. In addition, we derive for the first time the radial metallicity gradient on the disk's far side. Considering all the CCs with RGC<17kpc, we measure a gradient with a slope of -0.062dex/kpc and an intercept of +0.59dex, which is in agreement with previous determinations based on CCs on the near side of the disk.

Abstract Copyright: © ESO 2020

Journal keyword(s): Galaxy: structure - Galaxy: disk - stars: variables: Cepheids - infrared: stars

Status at CDS : Tables of objects will be appraised for possible ingestion in SIMBAD.

CDS comments: Paragraph 2.5 OGLE GD-CEP-0884, OGLE GD-CEP-0973 and OGLE GD-CEP-1003 not in SIMBAD.

Simbad objects: 11

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Number of rows : 11

N Identifier Otype ICRS (J2000)
RA
ICRS (J2000)
DEC
Mag U Mag B Mag V Mag R Mag I Sp type #ref
1850 - 2020
#notes
1 HD 6229 HB* 01 03 36.4557832987 +23 46 06.376168850   9.35 8.58     G5III:Sr 49 0
2 NAME Magellanic Clouds GrG 03 00 -71.0           ~ 5762 1
3 HD 33299 * 05 10 34.9750118364 +30 47 51.145118209   8.27 6.69     K0-Ib 39 0
4 NAME LMC G 05 23 34.6 -69 45 22     0.4     ~ 14993 1
5 * zet Gem cC* 07 04 06.5307903 +20 34 13.073871 5.20 4.58 3.79   3.082 G1Ib 537 0
6 OGLE BLG-CEP-65 cC* 17 40 58.69 -28 08 25.7         17.487 ~ 3 0
7 OGLE BLG-T2CEP-662 cC* 17 44 35.0909144829 -26 32 10.024311135         18.186 ~ 5 0
8 NAME Gal Center reg 17 45 40.04 -29 00 28.1           ~ 11760 0
9 OGLE BLG-CEP-89 cC* 17 56 16.90 -23 29 34.5         17.389 ~ 3 0
10 HD 193896 * 20 23 00.7899716489 -09 39 16.957970803   7.194 6.283     G5IIIa 31 0
11 NAME Galactic Bulge reg ~ ~           ~ 3459 0

    Equat.    Gal    SGal    Ecl

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2020.10.26-14:43:15

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