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半人马座 b 双星系统中的宽轨道巨行星。

A wide-orbit giant planet in the high-mass b Centauri binary system.

机构信息

Department of Astronomy, Stockholm University, Stockholm, Sweden.

INAF Osservatorio Astronomico di Padova, Padova, Italy.

出版信息

Nature. 2021 Dec;600(7888):231-234. doi: 10.1038/s41586-021-04124-8. Epub 2021 Dec 8.

Abstract

Planet formation occurs around a wide range of stellar masses and stellar system architectures. An improved understanding of the formation process can be achieved by studying it across the full parameter space, particularly towards the extremes. Earlier studies of planets in close-in orbits around high-mass stars have revealed an increase in giant planet frequency with increasing stellar mass until a turnover point at 1.9 solar masses (M), above which the frequency rapidly decreases. This could potentially imply that planet formation is impeded around more massive stars, and that giant planets around stars exceeding 3 M may be rare or non-existent. However, the methods used to detect planets in small orbits are insensitive to planets in wide orbits. Here we demonstrate the existence of a planet at 560 times the Sun-Earth distance from the 6- to 10-M binary b Centauri through direct imaging. The planet-to-star mass ratio of 0.10-0.17% is similar to the Jupiter-Sun ratio, but the separation of the detected planet is about 100 times wider than that of Jupiter. Our results show that planets can reside in much more massive stellar systems than what would be expected from extrapolation of previous results. The planet is unlikely to have formed in situ through the conventional core accretion mechanism, but might have formed elsewhere and arrived to its present location through dynamical interactions, or might have formed via gravitational instability.

摘要

行星形成发生在各种恒星质量和恒星系统结构中。通过在整个参数空间中研究它,特别是在极端情况下,可以更好地理解形成过程。早期对近距离围绕高质量恒星运行的行星的研究表明,随着恒星质量的增加,巨行星的频率增加,直到在 1.9 个太阳质量(M)处出现转折点,超过这个点,频率迅速下降。这可能意味着在更大质量的恒星周围行星形成受到阻碍,而质量超过 3M 的恒星周围的巨行星可能很少或不存在。然而,用于探测小轨道行星的方法对大轨道行星不敏感。在这里,我们通过直接成像证明了在距离 b Centauri 6-10M 双星 560 个太阳-地球距离处存在一颗行星。行星与恒星的质量比为 0.10-0.17%,与木星-太阳的比例相似,但探测到的行星的距离约为木星的 100 倍宽。我们的结果表明,行星可以存在于比以前的结果推断更大质量的恒星系统中。该行星不太可能通过传统的核心吸积机制就地形成,而是可能在其他地方形成,并通过动力学相互作用到达其当前位置,或者可能通过引力不稳定性形成。

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