Published May 1992 | Version Published
Journal Article Open

Optical aperture synthetic images of the photosphere and molecular atmosphere of Mira

Abstract

We have used aperture synthetic imaging methods to obtain diffraction-limited images of the photosphere and molecular atmosphere of the long period variable star Mira (o Ceti). These maps, obtained close to the peak of Mira's variability cycle, clearly indicate substantial distortions from circular symmetry. Our image of the emission due to resonant scattering of TiO shows a significant contribution due to a cool atmosphere with a radius one and a half times as great as that of the photosphere. We suggest that the photospheric asymmetry is most likely associated with the intrinsic pulsation mode of the star and that stable nonradial pulsation modes can coexist with the radial modes that are responsible for the photometric variability. Further aperture synthetic mapping, which should be possible for a major fraction of the photometric cycle, is capable of verifying this hypothesis.

Additional Information

© 1992 American Astronomical Society. Received 7 November 1991; revised 21 January 1992. We are grateful to E. S. Phinney and N. Murray for useful discussions and to H. Spinrad for the loan of the narrowband filters. Vital assistance at the telescope was provided by Juan Carrasco. S.R.K.'s research is funded in part by the Packard Foundation and a NSF Presidential Young Investigator award. C.A.H. was supported by a SERC/NATO research fellowship.

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Published - 1992AJ____103_1662H.pdf

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Identifiers

Eprint ID
74624
Resolver ID
CaltechAUTHORS:20170301-070004092

Funding

David and Lucile Packard Foundation
NSF
Science and Engineering Research Council (SERC)
North Atlantic Treaty Organization (NATO)

Dates

Created
2017-03-01
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Updated
2021-11-11
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