Notes on the outer-Oort-cloud formation efficiency in the simulation of Oort cloud formation

被引:1
|
作者
Dybczynski, P. A. [1 ]
Leto, G. [2 ]
Jakubik, M. [3 ]
Paulech, T. [4 ]
Neslusan, L. [3 ]
机构
[1] Adam Mickiewicz Univ, Astron Observ, PL-60286 Poznan, Poland
[2] Catania Astrophys Observ, I-95123 Catania, Italy
[3] Slovak Acad Sci, Astron Inst, Tatranska Lomnica 05960, Slovakia
[4] Slovak Acad Sci, Astron Inst, Bratislava 84504, Slovakia
关键词
comets: general; Oort cloud; solar system: formation; ENCOUNTERS;
D O I
10.1051/0004-6361/200811230
中图分类号
P1 [天文学];
学科分类号
0704 ;
摘要
Aims. The formation efficiency of the outer Oort cloud, obtained in the simulation performed in our previous work, appeared to be very low in a comparison with the corresponding results of other authors. Performing three other simulations, we attempt to find if any of three possible reasons can account for the discrepancy. Methods. The dynamical evolution of the particles is followed by numerical integration of their orbits. We consider the perturbations by four giant planets on their current orbits and with their current masses, in addition to perturbations by the Galactic tide and passing stars. Results. The omission of stellar perturbations causes only a small increase (about approximate to 10%) in the population size, because the erosion by stellar perturbations prevails upon the enrichment due to the same perturbations. As a result, our different model of them cannot result in any huge erosion of the comet cloud. The relatively shorter border, up to which we followed the dynamics of the test particles in our previous simulation, causes a significant (about a factor of approximate to 2) underestimate of the outer-Oort-cloud population. Nevertheless, it by itself cannot fully account for an order-of-magnitude difference in the formation-efficiency values. It seems that the difference could mainly stem from a large stochasticity of the comet-cloud formation process. Our maximum efficiency can grow to more than three times the corresponding minimum value when using some subsets of test particles.
引用
收藏
页码:847 / 850
页数:4
相关论文
共 50 条
  • [1] Oort cloud Ecology II. the chronology of the formation of the Oort cloud
    Portegies Zwart, Simon
    Torres, Santiago
    Cai, Maxwell X.
    Brown, Anthony G. A.
    [J]. ASTRONOMY & ASTROPHYSICS, 2021, 652
  • [2] Oort cloud formation and dynamics
    Dones, L
    Weissman, PR
    Levison, HF
    Duncan, MJ
    [J]. STAR FORMATION IN THE INTERSTELLAR MEDIUM: IN HONOR OF DAVID HOLLENBACH, CHRIS MCKEE AND FRANK SHU, 2004, 323 : 371 - 379
  • [3] 2-Gyr Simulation of the Oort-Cloud Formation. I. Introduction on a New Model of the Outer Oort-Cloud Formation
    Luboš Neslušan
    Piotr A. Dybczyński
    Giuseppe Leto
    Marián Jakubík
    Tomáš Paulech
    [J]. Earth, Moon, and Planets, 2009, 105 : 257 - 261
  • [4] 2-Gyr Simulation of the Oort-Cloud Formation. I. Introduction on a New Model of the Outer Oort-Cloud Formation
    Neslusan, Lubos
    Dybczynski, Piotr A.
    Leto, Giuseppe
    Jakubik, Marian
    Paulech, Tomas
    [J]. EARTH MOON AND PLANETS, 2009, 105 (2-4) : 257 - 261
  • [5] The simulation of the outer Oort cloud formation -: The first giga-year of the evolution
    Dybczynski, P. A.
    Leto, G.
    Jakubik, M.
    Paulech, T.
    Neslusan, L.
    [J]. ASTRONOMY & ASTROPHYSICS, 2008, 487 (01) : 345 - 355
  • [6] Embedded star clusters and the formation of the Oort Cloud
    Brasser, R.
    Duncan, M. J.
    Levison, H. F.
    [J]. ICARUS, 2006, 184 (01) : 59 - 82
  • [7] The formation of the Oort cloud in open cluster environments
    Kaib, Nathan A.
    Quinn, Thomas
    [J]. ICARUS, 2008, 197 (01) : 221 - 238
  • [8] The formation of the Oort cloud and the primitive galactic environment
    Fernandez, JA
    [J]. ICARUS, 1997, 129 (01) : 106 - 119
  • [9] Oort cloud formation at various Galactic distances
    Brasser, R.
    Higuchi, A.
    Kaib, N.
    [J]. ASTRONOMY & ASTROPHYSICS, 2010, 516
  • [10] THE OORT CLOUD
    Clark, Stuart
    [J]. NEW SCIENTIST, 2016, 229 (3065) : 32 - 32