The Scattered Disk: Origins, Dynamics, and End States

作者: A. Brunini , J. A. Fernández , T. Gallardo , R. S. Gomes

DOI:

关键词: Dynamics (mechanics)NeptuneAstrophysicsAstronomyPhysicsScattering process

摘要: From a review of the methods that have been used so far, we estimate present mass scattered disk to be in range 0.01 0.1 M . We dynamics disk, paying special attention mean-motion and Kozai resonances. discuss origin objects both as coming from Kuiper belt remnants scattering process during Neptune’s migration. stress importance resonance coupled with raising perihelia objects, emphasizing fossil live high perihelion could thus produced. analyze other mechanisms implanted detached onto their current orbits, focusing on few demand specific explanations. explore different end states highlight transfer Oort cloud.

参考文章(61)
Alessandro Morbidelli, Modern celestial mechanics : aspects of solar system dynamics Modern celestial mechanics : aspects of solar system dynamics. ,(2002)
JA Fernández, W-H Ip, None, Statistical and Evolutionary Aspects of Cometary Orbits International Astronomical Union Colloquium. ,vol. 116, pp. 487- 535 ,(1989) , 10.1007/978-94-011-3378-4_21
Alessandro Morbidelli, An Overview on the Kuiper Belt and on the Origin of Jupiter-family Comets Celestial Mechanics and Dynamical Astronomy. ,vol. 72, pp. 129- 156 ,(1998) , 10.1023/A:1008322915678
Stanley F. Dermott, Carl D. Murray, Solar system dynamics ,(1999)
Audrey Delsanti, David Jewitt, The Solar System Beyond The Planets Solar System Update. pp. 267- 293 ,(2006) , 10.1007/3-540-37683-6_11
Qingjuan Yu, Scott Tremaine, The Dynamics of Plutinos The Astronomical Journal. ,vol. 118, pp. 1873- 1881 ,(1999) , 10.1086/301045
S. Alan Stern, Collisional Time Scales in the Kuiper Disk and Their Implications The Astronomical Journal. ,vol. 110, pp. 856- ,(1995) , 10.1086/117568
M. J. Holman, J. Wisdom, Dynamical Stability in the Outer Solar System and the Delivery of Short Period Comets The Astronomical Journal. ,vol. 105, pp. 1987- 1999 ,(1993) , 10.1086/116574