UBVJHKLM photometry and modeling of R Coronae Borealis
arXiv:astro-ph/0209531 · doi:10.1051/0004-6361:20021162
Abstract
We present the results of UBVJHKLM photometry of R CrB spanning the period from 1976 to 2001. Studies of the optical light curve have shown no evidence of any stable harmonics in the variations of the stellar emission. In the L band we found semi-regular oscillations with the two main periods of ~3.3 yr and 11.9 yr and the full amplitude of ~0.8 mag and ~0.6 mag, respectively. The colors of the warm dust shell (resolved by Ohnaka et al. 2001) are found to be remarkably stable in contrast to its brightness. This indicates that the inner radius is a constant, time-independent characteristic of the dust shell. The observed behavior of the IR light curve is mainly caused by the variation of the optical thickness of the dust shell within the interval τ(V)= 0.2-0.4. Anticorrelated changes of the optical brightness (in particular with P ~ 3.3 yr) have not been found. Their absence suggests that the stellar wind of R CrB deviates from spherical symmetry. The light curves suggest that the stellar wind is variable. The variability of the stellar wind and the creation of dust clouds may be caused by some kind of activity on the stellar surface. With some time lag, periods of increased mass-loss cause an increase in the dust formation rate at the inner boundary of the extended dust shell and an increase in its IR brightness. We have derived the following parameters of the dust shell (at mean brightness) by radiative transfer modeling: inner dust shell radius r_in ~ 110 R_*, temperature T_dust(r_in) ~ 860 K, dust density ρ_dust(r_in) ~ 1.1x10^{-20} g cm^-3, optical depth τ(V) ~ 0.32 at 0.55 micron, mean dust formation rate [dM/dt]_dust ~ 3.1x10^-9 M_sun / yr, mass-loss rate [dM/dt]_gas ~ 2.1x10^-7 M_sun / yr, size of the amorphous carbon grains <(~) 0.01 micron, and B-V ~ -0.28.
9 pages, 6 figures, accepted for publication in A&A
References in corpus (4)
- Dust Formation Above Cool Magnetic Spots in Evolved Stars
- The 1995-1996 Decline of R Coronae Borealis - High Resolution Optical Spectroscopy
- Speckle interferometry and radiative transfer modelling of the Wolf-Rayet star WR 118
- Diffraction-limited speckle interferometry and modeling of the circumstellar envelope of R CrB at maximum and minimum light
Cited by in corpus (4)
- Direct imaging of a massive dust cloud around R Coronae Borealis
- R Coronae Borealis: Radial-velocity and other observations, 1950-2007
- One of Everything: The Breakthrough Listen Exotica Catalog
- Spectropolarimetry of R Coronae Borealis in 1998--2003: Discovery of Transient Polarization at Maximum Brightness