Issue |
A&A
Volume 384, Number 2, MarchIII 2002
|
|
---|---|---|
Page(s) | 441 - 451 | |
Section | Interstellar and circumstellar matter | |
DOI | https://doi.org/10.1051/0004-6361:20020021 | |
Published online | 15 March 2002 |
Tidally induced radial-velocity variations in close binaries
1
Department of Physics and Astronomy, The Open University, Walton Hall, Milton Keynes, MK7 6AA, UK e-mail: B.Willems@open.ac.uk
2
Instituut voor Sterrenkunde, Katholieke Universiteit Leuven, Celestijnenlaan 200 B, 3001 Leuven, Belgium e-mail: Conny.Aerts@ster.kuleuven.ac.be
Corresponding author: B. Willems, b.willems@open.ac.uk
Received:
25
July
2001
Accepted:
4
January
2002
A theoretical framework for the determination of tidally
induced radial-velocity variations in a component of a close binary
is presented. Both the free and the forced oscillations of the
component are treated as linear, isentropic perturbations of a
spherically symmetric star. Resonances between dynamic
tides and free oscillation modes are taken into account by means of
the formalism developed by Smeyers et al. ([CITE]). The amplitude of the
tidally induced radial-velocity variations seen by the observer
depends on the orbital eccentricity and on the orbital inclination.
The amplitude increases with increasing orbital eccentricity and is
most sensitive to the value of the orbital inclination when
. In the case of a
ZAMS
star with a
compact companion, it is shown that
resonant dynamic tides can lead to radial-velocity variations with
amplitudes large enough to be detected in observations. The shape of
the tidally induced radial-velocity curves varies from very irregular for
orbital periods away from any resonances with free oscillation modes
to sinusoidal for orbital periods close to a resonance with
a free oscillation mode. Our investigation is concluded with an
application to the slowly pulsating B star HD 177863 showing the
possibility of resonant excitation of a high-order second-degree
g+-mode in this star.
Key words: binaries: close / stars: oscillations / methods: analytical / stars: individual: HD 177863
© ESO, 2002
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