ThreeDimensionalConfigurations/Stability/RiemannEllipsoids: Difference between revisions
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Here we review the work of {{ LL96full }} titled, "New Global Instabilities of the Riemann | Here we review the work of {{ LL96full }} titled, "New Global Instabilities of the Riemann Ellipsoids," and discuss various extensions that have been made to this work. We were prompted to tackle this review by an email received in December 2021 from [https://www.nist.gov/people/howard-cohl Howard S. Cohl]. | ||
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[[File:EFEdiagram02.png|350px|EFE Diagram02]] | [[File:EFEdiagram02.png|350px|EFE Diagram02]] | ||
</td></tr></table> | </td></tr></table> | ||
Four example models: | |||
* Riemann Meets COLLADA & Oculus Rift S: <b>[[ThreeDimensionalConfigurations/MeetsCOLLADAandOculusRiftS|(b/a, c/a) = (0.41, 0.385)]]</b> | |||
* <b>[[Appendix/Ramblings/RiemannB90C333|(b/a, c/a) = (0.90, 0.333)]]</b> | |||
* <b>[[Appendix/Ramblings/RiemannB74C692|(b/a, c/a) = (0.74, 0.692)]]</b> | |||
* <b>[[Appendix/Ramblings/RiemannB28C256|(b/a, c/a) = (0.28, 0.256)]]</b> | |||
=See Also= | =See Also= | ||
Revision as of 20:47, 11 December 2021
Lebovitz & Lifschitz (1996)
| Lebovitz & Lifschitz (1996) |
|---|
Here we review the work of 📚 N. R. Lebovitz, & A. Lifschitz (1996, ApJ, Vol. 458, pp. 699 - 713) titled, "New Global Instabilities of the Riemann Ellipsoids," and discuss various extensions that have been made to this work. We were prompted to tackle this review by an email received in December 2021 from Howard S. Cohl.
Background
In Figure 1, the abscissa is the ratio of semiaxes in the equatorial plane, and the ordinate is the ratio of the vertical semiaxis to the larger of the equatorial semi axes. This diagram shows what 📚 Lebovitz & Lifschitz (1996) — hereafter, LL96 — refer to as "the horn-shaped region of existence of S-type ellipsoids and the Jacobi family;" it underpins all four panels of the LL96 Figure 2.
| Figure 1: The Horn-Shaped Region of S-type Ellipsoids |
Four example models:
- Riemann Meets COLLADA & Oculus Rift S: (b/a, c/a) = (0.41, 0.385)
- (b/a, c/a) = (0.90, 0.333)
- (b/a, c/a) = (0.74, 0.692)
- (b/a, c/a) = (0.28, 0.256)
See Also
- A library of ellipsoidal harmonics may be available from George Dassios,
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Appendices: | VisTrailsEquations | VisTrailsVariables | References | Ramblings | VisTrailsImages | myphys.lsu | ADS | |