论文标题

OSSO:稳定的Neptunian Trojans的偏心和倾斜度分布

OSSOS: The Eccentricity and Inclination Distributions of the Stable Neptunian Trojans

论文作者

Lin, Hsing Wen, Chen, Ying-Tung, Volk, Kathryn, Gladman, Brett, Murray-Clay, Ruth, Alexandersen, Mike, Bannister, Michele T., Lawler, Samantha M., Ip, Wing-Huen, Lykawka, Patryk Sofia, Kavelaars, J. J., Gwyn, Stephen D. J., Petit, Jean-Marc

论文摘要

海王星的外在迁移可能使轨道上的轨道上的次要行星在海王星1:1的共鸣中动态稳定。我们使用外部太阳系起源调查(OSSOS)和PAN-Starrs1的检测和调查效率探索Neptune稳定木马的内在文库幅度,偏心率和倾斜度分布。我们发现,稳定的Neptunian Trojan人口的库幅度可以很好地建模为带有库幅度宽度$σ_{a_phi} $ 15 $^\ circ $的雷利分布。总体上,可以接受Neptune Trojan人口的建模,其宽度偏心分布的宽度$σ_e$为0.045 $ 0.045和典型的SIN(I)X Gaussian倾斜度分布,其宽度$σ_i$ 14 +/- 2度。但是,这些分布仅在略有接受。这可能是因为即使考虑到调查检测偏见,已知的大HR <8和小的HR> = 8 Neptune Trojans似乎具有明显不同的偏心率和倾向。我们建议,像经典的kuiper腰带一样,稳定的内部Neptunian Trojan人口具有动态的“热”和动态的“冷”组件,其偏心 /倾斜度分布,$σ_{e-cold} $ 〜0.02 / $ 〜0.02 / $ 〜0.02 / $σ_{i-cold} $ 〜6 $ 〜6 $ 〜6 $ 〜6 $^$和$^$ $} $} $} e-n.0 50 5 $σ_{i-hot} $ 〜18 $^\ circ $。在这种情况下,“冷” l4 neptunian木马人口缺乏HR> = 8会员,并且具有13 +11/-6``冷''木马,其HR <8。另一方面,“ Hot” L4 Neptunian trojan人口具有136 +57/-48 trojans HR <10-同一人群2.4 lum lum and l4 jof and l4 the l4 the l4 the l4 the l4 the l4 the l4 the l4 the l4 wims。

The minor planets on orbits that are dynamically stable in Neptune's 1:1 resonance on Gyr timescales were likely emplaced by Neptune's outward migration. We explore the intrinsic libration amplitude, eccentricity, and inclination distribution of Neptune's stable Trojans, using the detections and survey efficiency of the Outer Solar System Origins Survey (OSSOS) and Pan-STARRS1. We find that the libration amplitude of the stable Neptunian Trojan population can be well modeled as a Rayleigh distribution with a libration amplitude width $σ_{A_phi}$ of 15$^\circ$. When taken as a whole, the Neptune Trojan population can be acceptably modeled with a Rayleigh eccentricity distribution of width $σ_e$ of 0.045 and a typical sin(i) x Gaussian inclination distribution with a width $σ_i$ of 14 +/- 2 degrees. However, these distributions are only marginally acceptable. This is likely because, even after accounting for survey detection biases, the known large Hr < 8 and small Hr >= 8 Neptune Trojans appear to have markedly different eccentricities and inclinations. We propose that like the classical Kuiper belt, the stable intrinsic Neptunian Trojan population have dynamically `hot' and dynamically `cold' components to its eccentricity/inclination distribution, with $σ_{e-cold}$ ~ 0.02 / $σ_{i-cold}$ ~ 6$^\circ$ and $σ_{e-hot}$~ 0.05 / $σ_{i-hot}$ ~ 18$^\circ$. In this scenario, the `cold' L4 Neptunian Trojan population lacks the Hr >= 8 members and has 13 +11/-6 `cold' Trojans with Hr < 8. On the other hand, the `hot' L4 Neptunian Trojan population has 136 +57/-48 Trojans with Hr < 10 -- a population 2.4 times greater than that of the L4 Jovian Trojans in the same luminosity range.

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