Non-gravitational Mechanism of Comets’ Ejection from the Oort Cloud Due to Cometary Outbursts

IF 0.6 4区 物理与天体物理 Q4 ASTRONOMY & ASTROPHYSICS Solar System Research Pub Date : 2024-01-15 DOI:10.1134/s0038094623060023
D. V. Belousov, A. K. Pavlov
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Abstract

Cometary nuclei located in the Oort cloud accumulate high concentration of radicals in surface layers under cosmic ray irradiation at low temperatures. Recombination of radicals induced by an increase in the surface temperature of a comet by a close passing star, O/B stars, or nearby supernovae leads to the heating of the ice layer with the releasing of volatiles from the amorphous ice. When high gas pressure builds up beneath the cometary surface, dust and gas are ejected. The resulting jet of gas and dust can change the comet’s orbit in the Oort cloud. The studied non-gravitational mechanism can effectively expel comets with a radius of ≤1 km from the Oort cloud into the inner part of the Solar system. The total effect of cometary outbursts on the stability of cometary orbits during the evolution of Solar system can result in a decrease in the number of long-period small-radius comets.

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彗星爆发导致彗星抛出奥尔特云的非引力机制
摘要位于奥尔特云中的彗核在宇宙射线的低温照射下,表层积累了高浓度的自由基。彗星表面温度因近距离通过的恒星、O/B星或附近的超新星而升高,引起自由基的重组,导致冰层加热,非晶态冰释放出挥发物。当彗星表面下的气体压力升高时,尘埃和气体就会被喷射出来。由此产生的气体和尘埃喷流会改变彗星在奥尔特云中的轨道。所研究的非引力机制可以有效地将半径≤1千米的彗星从奥尔特云驱逐到太阳系内部。在太阳系演化过程中,彗星爆发对彗星轨道稳定性的总体影响会导致长周期小半径彗星数量的减少。
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来源期刊
Solar System Research
Solar System Research 地学天文-天文与天体物理
CiteScore
1.60
自引率
33.30%
发文量
32
审稿时长
6-12 weeks
期刊介绍: Solar System Research publishes articles concerning the bodies of the Solar System, i.e., planets and their satellites, asteroids, comets, meteoric substances, and cosmic dust. The articles consider physics, dynamics and composition of these bodies, and techniques of their exploration. The journal addresses the problems of comparative planetology, physics of the planetary atmospheres and interiors, cosmochemistry, as well as planetary plasma environment and heliosphere, specifically those related to solar-planetary interactions. Attention is paid to studies of exoplanets and complex problems of the origin and evolution of planetary systems including the solar system, based on the results of astronomical observations, laboratory studies of meteorites, relevant theoretical approaches and mathematical modeling. Alongside with the original results of experimental and theoretical studies, the journal publishes scientific reviews in the field of planetary exploration, and notes on observational results.
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