Skip to main content
U.S. Department of Energy
Office of Scientific and Technical Information

SPIN–SPIN COUPLING IN THE SOLAR SYSTEM

Journal Article · · Astrophysical Journal
 [1];  [2]
  1. Division of Geological and Planetary Sciences, California Institute of Technology, Pasadena, CA 91125 (United States)
  2. Departement Lagrange, Observatoire de la Côte d’Azur, F-06304 Nice (France)

The richness of dynamical behavior exhibited by the rotational states of various solar system objects has driven significant advances in the theoretical understanding of their evolutionary histories. An important factor that determines whether a given object is prone to exhibiting non-trivial rotational evolution is the extent to which such an object can maintain a permanent aspheroidal shape, meaning that exotic behavior is far more common among the small body populations of the solar system. Gravitationally bound binary objects constitute a substantial fraction of asteroidal and TNO populations, comprising systems of triaxial satellites that orbit permanently deformed central bodies. In this work, we explore the rotational evolution of such systems with specific emphasis on quadrupole–quadrupole interactions, and show that for closely orbiting, highly deformed objects, both prograde and retrograde spin–spin resonances naturally arise. Subsequently, we derive capture probabilities for leading order commensurabilities and apply our results to the illustrative examples of (87) Sylvia and (216) Kleopatra asteroid systems. Cumulatively, our results suggest that spin–spin coupling may be consequential for highly elongated, tightly orbiting binary objects.

OSTI ID:
22525466
Journal Information:
Astrophysical Journal, Journal Name: Astrophysical Journal Journal Issue: 2 Vol. 810; ISSN ASJOAB; ISSN 0004-637X
Country of Publication:
United States
Language:
English

Similar Records

Rotational properties of the Maria asteroid family
Journal Article · Fri Feb 28 23:00:00 EST 2014 · Astronomical Journal (New York, N.Y. Online) · OSTI ID:22339996

COLLISIONALLY BORN FAMILY ABOUT 87 SYLVIA
Journal Article · Tue Jun 15 00:00:00 EDT 2010 · Astronomical Journal (New York, N.Y. Online) · OSTI ID:21443099