Mashable 02月05日
This giant planet formed in a strange way, scientists find
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WASP-121b是一颗遥远的系外行星,极端炎热,拥有金属云和宝石雨。天文学家通过光谱仪发现,这颗“热木星”含有异常多的岩石物质,表明它形成于离恒星非常近的区域。这与行星科学家对气态巨行星形成位置的传统认知相悖。研究表明,行星可能在原行星盘中较热的区域形成,挑战了以往认为巨行星在寒冷、气体丰富的外部区域形成的理论。这颗行星的极端气候也令人惊叹,其潮汐锁定导致行星一侧持续受恒星炙烤,而另一侧则相对凉爽,并观测到“钙雨”现象。

🔥WASP-121b是一颗“热木星”,其大气层极端炎热,足以将钙等元素蒸发到空气中,并在夜晚凝结形成“钙雨”。

🔭天文学家利用位于智利安第斯山脉的强大的双子座南方望远镜,结合IGRINS光谱仪,分析了WASP-121b的光谱,从而揭示了其大气成分。

🪐研究表明,WASP-121b含有异常比例的岩石物质,这暗示它形成于原行星盘中靠近恒星的区域,该区域温度较高,不利于冰的形成。这一发现挑战了当前关于气态巨行星通常在较冷区域形成的主流理论。

🌡️WASP-121b被潮汐锁定,这意味着它的一面始终面向恒星,处于极热状态,而另一面则始终背对恒星,较为凉爽。这种极端温差导致了其独特的“金属云”和“宝石雨”现象。

The distant world WASP-121b is so hot that it hosts metallic clouds and rains gems.

Astronomers discovered the gas giant planet — dubbed a "hot Jupiter" — in 2016, but have continued to investigate this intriguing exoplanet, which is a world beyond our solar system.

Using a powerful telescope equipped with an instrument (called a spectrometer) that can detect the composition of far-off objects, researchers found WASP-121b contains an unusual amount of rocky material, indicating the massive planet formed quite close to its star. If a world has a higher proportion of rocky material (like iron and silicon) compared to ices, this means it formed in a zone of the developing solar system, called a "protoplanetary disk," where it was too hot for many ices to form.

But this observation contradicts what planetary scientists thought about how gaseous giants like WASP-121b spawned in their expansive, donut-shaped protoplanetary disk. The leading theory was these giant worlds were created in the outer part of these disks, where it's frigid, but there are copious amounts of gas available to amass onto a developing world.

"Our measurement means that perhaps this typical view needs to be reconsidered and our planet formation models revisited," Peter Smith, an astrophysicist at Arizona State University’s School Of Earth and Space Exploration and coauthor of the research, said in a statement. The research was recently published in The Astronomical Journal.

The graphic below shows how different materials solidify and vaporize based upon the proximity to their star. In the mid-region, beyond where everything vaporizes, rock materials solidify, but it's too hot for gases, like water vapor or CO2, to turn to ice.

A visualization of how rocky and icy materials form in a solar system's protoplanetary disk. Credit: NOIRLab / NSF / AURA / P. Marenfeld
The Gemini South telescope, located atop Cerro Pachón in the Chilean Andes. Credit: International Gemini Observatory / NOIRLab / NSF / AURA / M. Paredes

The researchers used the powerful Gemini South telescope, located at 8,980 feet in the Chilean mountains, to peer into the atmosphere of distant WASP-121b, located some 880 light-years away in the Milky Way galaxy. Attached to the telescope was an instrument called the Immersion GRating INfrared Spectrometer, or IGRINS, which separates out the light observed from distant space objects, like a prism. The different light spectrums reveal the atmospheric composition of these distant worlds.

Peering into WASP-121b also revealed more about the intensity of this alien realm. "The climate of this planet is extreme, and nothing like that of Earth,” Smith explained.

"The climate of this planet is extreme, and nothing like that of Earth."

The planet is tidally locked to its star — like the moon is locked to Earth — meaning that one side of WASP-121b is incessantly seared by its star, while the other is dark and (relatively) cooler. On the dayside, elements like calcium are vaporized into the air. But on the nightside, these materials can condense and produce rain. The astronomers, for example, spotted "calcium rain" on WASP-121b.

There are no "hot Jupiters" like WASP-121b in our solar system. Nor are there any rocky super-Earth worlds. Yet exoplanet researchers have found both these planet types are common in our galaxy. Although there are some strange-sounding worlds out there, it may be that it's our cosmic neighborhood that's actually quite unusual. And not just that. Our solar system may host an extraordinarily rare galactic phenomena: an intelligent, communicating civilization.

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WASP-121b 系外行星 热木星 金属云 宝石雨
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