天文学家可能已经发现了首颗系外卫星。
Astronomers may have found the first exomoon

原始链接: https://www.eso.org/public/news/eso2610/

天文学家利用欧洲南方天文台的甚大望远镜(VLT),在 CD-35 2722 系统中发现了首个可能的“系外卫星”(或称系外月球)。 与太阳系中的传统卫星不同,该天体环绕着一颗褐矮星(一种亚恒星天体)运行,而这颗褐矮星本身又绕着一颗恒星运行。该天体的质量约为木星质量,这使行星与卫星的标准定义变得复杂。由于该系统模糊了恒星、行星和卫星之间的界限,研究人员在对其进行分类时遇到了困难,但这一发现仍是搜寻太阳系外卫星领域的一项突破。 由凯文·霍伊(Kevin Hoy)和爱丽丝·祖洛(Alice Zurlo)领导的研究团队通过观测褐矮星运动中的微小摆动,利用径向速度法探测到了该天体。这一发现发表在《自然》杂志上,为长期以来寻找的这一现象提供了重要证据。研究人员认为,研究此类独特的系统将为理解行星形成的多样性提供重要见解。未来,随着即将投入使用的极大望远镜(ELT)进行观测,预计将能探测到更小的系外卫星,这将促使我们重新审视在多样化的宇宙环境中如何界定行星天体。

这篇 Hacker News 讨论聚焦于欧洲南方天文台(ESO)近期关于可能发现“系外卫星”的报告。 讨论的核心大多围绕天体分类的困难。由于目标天体绕着一颗褐矮星旋转——这是一种介于行星与恒星定义之间的亚恒星天体——用户们争论“系外卫星”这一术语是否恰当。许多评论者认为,现有的基于太阳系的术语已不足以描述如此复杂的系统,从而引发了关于该天体应被归类为系外行星、亚行星还是全新类别天体的猜测。 其他次要议题包括关于褐矮星形成的专业讨论、这些卫星拥有自身卫星的可能性,以及一段关于 ESO 网站上智利国旗 CSS 样式的小插曲(因为智利是该组织的东道国,具有特殊地位)。总体而言,社区认为这一发现意义重大,凸显了在非太阳系系统中定义和分类天体所面临的挑战。
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原文

Press Release

22 July 2026

Observations made with the European Southern Observatory’s Very Large Telescope (ESO’s VLT) have revealed evidence for a moon-like object in the CD-35 2722 system. Unlike moons in our Solar System, the newly found object does not orbit a planet, raising questions about what to name it. Instead, it circles a brown dwarf, an object larger than a planet, that orbits the CD-35 2722 star. If confirmed, this could be the first ‘moon’ discovered outside our Solar System.

Kevin Hoy, an ESO student in Chile and lead author of the study published today in Nature, describes the system he spent months analysing as “super weird” compared to our own. The biggest and most massive object in this young system is the star CD-35 2722, which has about half the mass of the Sun. The star is being orbited by a brown dwarf, an object too massive to be a planet but too small to be a star. The newly discovered object orbits this brown dwarf.

This system is somewhat hard to define using Solar-System-based words like ‘planet’ and ‘moon’,” states Hoy, who is also affiliated with the Universidad Diego Portales and the Millennium Nucleus of Young Exoplanets and their Moons (YEMS) in Chile. The new object, which the team call an exosatellite, is at least as massive as Jupiter while the brown dwarf has more than 30 times the mass of Jupiter. “The exosatellite is clearly massive enough to be a planet, but it does not orbit a star, though it orbits an object that orbits a star," says Hoy. "Being the third wheel in this system makes us want to call it a moon, even if it is nothing like the small, rocky moons we have in our system.”

This exosatellite or ‘exomoon’, a natural satellite outside our Solar System [1], is difficult to label, given the differences in this system compared to our own. Alice Zurlo, YEMS Director and collaborator on the study explains: “The satellite we report is a giant gaseous body orbiting a highly massive companion, itself several times the mass of Jupiter.”

We have a clear delineation between the planets and the Sun in the Solar System, so defining things like moons is simple. In the CD-35 2722 system, where we are blurring the lines between stars, planets, and moons, the whole thing becomes more complicated to describe,” adds Zurlo, who is also an astrophysicist at Universidad Diego Portales.

Regardless of what to call this object, astronomers have been trying to detect satellites outside our Solar System for years, but none has yet been confidently detected. Therefore, despite the over 6000 exoplanets discovered to date, only a few exomoon candidates have been spotted and the evidence to support them is limited. Just a few months ago, a team led by Quentin Kral reported on observations with ESO’s Very Large Telescope Interferometer in the HD 206893 star system, which revealed hints of a satellite, but no firm detection.

For the CD-35 2722 observations, Hoy, Zurlo and their team used the CRIRES+ instrument on ESO’s VLT, employing the method that was used to find the first exoplanet around a Sun-like star. They applied this radial velocity method to detect small wobbles on the brown dwarf caused by the object orbiting it, finding what the team believe to be strong evidence for this ‘moon’. “As exotic as it is, this system is truly unique and represents a breakthrough: the first plausible detection of an exosatellite,” says Zurlo.

Beyond the excitement of discovering new types of objects, detecting satellites in other planetary systems can help us understand how diverse their formation and evolution might be. With its 39-metre mirror and advanced instrumentation, ESO’s upcoming Extremely Large Telescope (ELT) will allow astronomers to detect smaller exomoons. Discoveries with the ELT will make us further reconsider how we label planetary objects from systems different from our own.

Notes

[1] A satellite is an object that orbits another object and it can be natural (like our own moon) or artificial (like a spacecraft). An exosatellite is a satellite outside our Solar System. An exomoon is generally considered to be a natural satellite orbiting a planet or another object outside the Solar System, though there is no officially accepted definition for exomoon.

More information

The team is composed of K. Hoy (Instituto de Estudios Astrofísicos, Facultad de Ingeniería y Ciencias, Universidad Diego Portales, Chile [Diego Portales]; European Southern Observatory, Chile [ESO Chile]; Millennium Nucleus on Young Exoplanets and their Moons, Chile [YEMS]), A. Zurlo (Diego Portales; YEMS), P. A. Peña R. (Diego Portales; Centro de Astrofísica y Tecnologías Afines, Chile [CATA]), J. Köhler (TLS Tautenburg, Germany), S. Desidera (INAF Osservatorio Astronomico di Padova, Italy [INAF Padova]), R. Gratton (INAF Padova), C. Lazzoni (INAF Padova; YEMS), S. Petrus (NASA Goddard Space Flight Center, USA; YEMS), F. Rodler (ESO Chile), J. Smoker (ESO Chile), V. D’Orazi (Dipartimento di Fisica, Università degli Studi di Roma Tor Vergata, Italy; INAF Osservatorio Astronomico di Roma, Italy), I. Carleo (INAF Padova), I. Giovannini (Dipartimento di Fisica e Astronomia, Università degli Studi di Padova, Italy; Diego Portales; INAF Padova; YEMS).

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Kevin Hoy
European Southern Observatory (ESO) and Universidad Diego Portales
Santiago, Chile
Email: [email protected], [email protected]

Alice Zurlo
Universidad Diego Portales
Santiago, Chile
Tel: +56 22138153
Email: [email protected]

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ESO Media Manager
Garching bei München, Germany
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