NASA航天器发现比罗马斗兽场更大的月球陨石坑


2026年9月16日 / 美国东部时间下午5:45 / 哥伦比亚广播公司/美联社

科学家们在月球上发现了一个比罗马斗兽场还要大的陨石坑,它是两年前一次强力撞击的产物,最初并未被察觉。

据NASA介绍,这个边缘陡峭的陨石坑直径约728英尺,相当于两个足球场的长度,最大深度达141英尺,相当于三辆堆叠起来的黄色校车。它是太阳系中目前已知的近代形成的最大撞击陨石坑。

研究人员表示,这类大规模撞击事件估计每132年才会发生一次,因此在NASA准备在月球建立宇航员基地之际,这一发现堪称信息宝库。

“此次撞击在统计上极为罕见,堪称千载难逢的观测机会,”科学家们在周三发表于《科学进展》期刊的两篇相关研究论文之一中写道。

这组由NASA月球勘测轨道飞行器拍摄的照片展示了2024年5月新发现的陨石坑形成前后,月球表面同一区域的景象。NASA/戈达德航天飞行中心/直觉机器人公司 美联社供图

NASA的月球勘测轨道飞行器于2024年4月11日至5月22日期间,在月球近侧发现了这个陨石坑。它形成于一枚相当于3至6层楼高的小行星或彗星碎片撞击月球表面之后,当时地球上和太空中的望远镜都未能实时监测到这次撞击。

直到2025年8月,研究人员才在海量数据中识别出月球勘测轨道飞行器拍摄的广角图像。该航天器于去年秋季拍摄了更详细的照片,并于今年年初确认了这一发现。

这个陨石坑以已故的托马斯·麦克盖琴命名,他曾担任休斯顿月球与行星研究所所长。它的体积是十年前月球勘测轨道飞行器发现的此前纪录保持者的三倍。月球自古以来就布满陨石坑,拥有太阳系中一些最大的撞击坑,其中一个直径超过1500英里。

最新的这次撞击搅动了超过66英里范围内的月球表面。就职于直觉机器人公司、担任月球勘测轨道飞行器相机首席科学家的马克·罗宾逊表示,被抛射出去的尘埃和岩土的角度比预期更高。罗宾逊是其中一篇研究论文的第一作者。

另一项研究则在新陨石坑周围发现了一个宽4英里的低温区域,这与月球表层土壤松动的情况相符。加州大学洛杉矶分校的合著者戴维·佩奇将其比作园艺作业。

“我们现在将撞击视为对月壤进行耕作的一种方式——搅动沉积物,将通常位于地下的物质翻到表面,”佩奇在一份声明中说道。

NASA的月球勘测轨道飞行器自2009年以来一直在绕月运行,为该机构准备送宇航员重返月球提供了月球表面的近距离观测数据。罗宾逊表示,自该探测器发射以来发现的众多陨石坑表明,月球表层每8万年就会被撞击抛射物翻耕一次,这比此前的认知更快。

与大众普遍认为阿波罗登月宇航员留在月球上的布满尘土的脚印会永久留存的观点相反,罗宾逊在一封电子邮件中表示,这些脚印“肯定会在那个时间范围内彻底消失”。

他补充道,下一步将计算陨石坑抛射物撞击NASA计划中的月球基地的风险。“这些信息将帮助工程师加固结构,这样人们就不必担心受到撞击损坏,或者至少可以减少担忧。”

NASA spacecraft discovers moon crater bigger than Roman Colosseum

September 16, 2026 / 5:45 PM EDT / CBS/AP

Scientists have discovered a crater on the moon that’s bigger than the Roman Colosseum and is the result of a powerful impact two years ago that initially went undetected.

The steep-sided hole measured about 728 feet across, the length of two football fields, and up to 141 feet deep, equivalent to three vertically stacked yellow school buses, according to NASA. It’s the solar system’s biggest known impact crater carved out in recent times.

Such a large-scale event is estimated to occur only once every 132 years, researchers said, making this a treasure trove of information as NASA prepares to build a base for astronauts on the moon.

“This event constitutes a statistically rare, effectively once-in-a-lifetime observation,” the scientists wrote in one of two studies appearing on the subject Wednesday in the journal Science Advances.

This set of photos from NASA’s Lunar Reconnaissance Orbiter shows the same area on the moon’s surface before and after a newly discovered crater in May 2024. NASA/Goddard Space Flight Center/Intuitive Machines via AP

NASA’s Lunar Reconnaissance Orbiter spotted the crater on the moon’s near side sometime between April 11 and May 22, 2024, soon after it was formed when an incoming fragment of an asteroid or comet the size of a three- to six-story building hit the surface. The moon strike escaped real-time detection by telescopes on Earth and in space.

LRO’s wide-angle images were not identified in the crush of data until August 2025. The spacecraft gathered more detailed pictures last fall, followed by confirmation of the discovery early this year.

The crater — named for the late Thomas McGetchin, a former director of Houston’s Lunar and Planetary Institute — is three times bigger than the previous record-holder found by the LRO a decade ago. Pockmarked since ancient times, the moon bears some of the solar system’s largest impact craters, including one that stretches more than 1,500 miles across.

This latest impact churned the lunar surface for more than 66 miles. Dust and rocky soil were hurled away at a higher angle than expected, according to Mark Robinson, chief scientist for the LRO’s cameras who works at Intuitive Machines. Robinson was the lead author for one of the studies.

A separate study identified a 4-mile-wide cold spot around the new crater, consistent with a loosening of the moon’s topsoil. Co-author David Paige of the University of California, Los Angeles, likens it to gardening.

“We’re now thinking of impacts as a way to garden the regolith — churning the sediments and putting stuff above that’s usually below the surface,” Paige said in a statement.

NASA’s Lunar Reconnaissance Orbiter has circled the moon since 2009, providing a close-up view of the lunar surface as the space agency prepares to send astronauts back. The LRO’s numerous crater discoveries since its launch show that the moon’s top inch of soil is being overturned by ejected material every 80,000 years, faster than previously thought, according to Robinson.

Contrary to the popular belief that the Apollo moonwalkers’ dusty lunar footprints will last forever, they will “definitely be long gone in that time frame,” Robinson said in an email.

The next step is to calculate the risk of ejected crater material striking NASA’s planned moon base, he added. “That information will help engineers harden structures so one won’t have to worry about damage, or maybe worry less.”

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