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NASA NTRS ยท 19880040769

On disk-planet interactions and orbital eccentricities

Abstract

While Lindblad resonances both within and without a perturber's orbit excite its eccentricity, the present study of the eccentricity evolution due to the density wave interaction between a planetesimal and a Keplerian disk notes that coronation resonances in these regions lose their eccentricity damping effectiveness if the object is embedded in a continuous disk without a gap. Attention is given to another class of Lindblad resonances which, under these conditions, operates on disk material coorbiting with the perturber; these resonances thereby become the most important source of eccentricity damping. A model problem indicates that eccentricity ultimately undergoes decay.

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BibTeXRIS

Ward, William R.. 1988-02-01. On disk-planet interactions and orbital eccentricities. https://ntrs.nasa.gov/citations/19880040769

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