The MACHO Project Large Magellanic Cloud Variable Star Inventory. XIII. Fourier Parameters for the First Overtone RR Lyrae Variables and the LMC Distance
C. Alcock, D. R. Alves, T. S. Axelrod, A. C. Becker, D. P. Bennett, C. M. Clement, K. H. Cook, A. J. Drake, K. C. Freeman, M. Geha, K. Griest, M. J. Lehner, S. L. Marshall, D. Minniti, A. Muzzin, C. A. Nelson, B. A. Peterson, P. Popowski, P. J. Quinn, A. W. Rodgers, J. F. Rowe, W. Sutherland, T. Vandehei, D. L. Welch
Abstract
Fourier coefficents have been derived for the V and R light curves of 785 overtone RR Lyrae variables in 16 MACHO fields near the bar of the LMC. The ϕ31 and R21 coefficients have been compared with those of the first overtone RR Lyrae variables in the Galactic globular clusters NGC 6441, M107, M5, M3, M2, ω Centauri and M68. The results indicate that many of the LMC variables have properties similar to the ones in M2, M3, M5 and the Oosterhoff type I variables in ω Cen, but they are different from the Oosterhoff type II variables in ω Cen. Equations derived from hydrodynamic pulsation models have been used to calculate the luminosity and temperature for the 330 bona fide first-overtone variables. The results indicate that they have L in the range 1.6 to 1.8 and Teff between 3.85 and 3.87. Based on these temperatures, a mean color excess E(V-R) =0.08 mag, equivalent to E(B-V)=0.14 mag, has been estimated for these 330 stars. The 80 M5-like variables (selected according to their location in the ϕ31- P plot) are used to determine a LMC distance. After correcting for the effects of extinction and crowding, a mean apparent magnitude <V0>=18.99 0.02 (statistical) 0.16 (systematic) has been estimated for these 80 stars. Combining this with a mean absolute magnitude MV=0.56 0.06 for M5-like stars derived from Baade-Wesselink analyses, main sequence fitting, Fourier parameters and the trigonometric parallax of RR Lyrae, we derive an LMC distance modulus μ=18.43 0.06 (statistical) 0.16 (systematic) mag. The large systematic error arises from the difficulties of correcting for interstellar extinction and for crowding.
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