Planetary Science Institute, Tucson, AZ, USA.
Department of Earth Sciences, Southern Methodist University, Dallas, TX, USA.
Nature. 2023 Aug;620(7972):116-121. doi: 10.1038/s41586-023-06183-5. Epub 2023 Jul 5.
Granites are nearly absent in the Solar System outside of Earth. Achieving granitic compositions in magmatic systems requires multi-stage melting and fractionation, which also increases the concentration of radiogenic elements. Abundant water and plate tectonics facilitate these processes on Earth, aiding in remelting. Although these drivers are absent on the Moon, small granite samples have been found, but details of their origin and the scale of systems they represent are unknown. Here we report microwave-wavelength measurements of an anomalously hot geothermal source that is best explained by the presence of an approximately 50-kilometre-diameter granitic system below the thorium-rich farside feature known as Compton-Belkovich. Passive microwave radiometry is sensitive to the integrated thermal gradient to several wavelengths depth. The 3-37-gigahertz antenna temperatures of the Chang'e-1 and Chang'e-2 microwave instruments allow us to measure a peak heat flux of about 180 milliwatts per square metre, which is about 20 times higher than that of the average lunar highlands. The surprising magnitude and geographic extent of this feature imply an Earth-like, evolved granitic system larger than believed possible on the Moon, especially outside of the Procellarum region. Furthermore, these methods are generalizable: similar uses of passive radiometric data could vastly expand our knowledge of geothermal processes on the Moon and other planetary bodies.
在地球以外的太阳系中几乎不存在花岗岩。在岩浆系统中达到花岗岩的组成需要多阶段的熔融和分馏,这也会增加放射性元素的浓度。丰富的水和板块构造在地球上促进了这些过程,有助于再熔融。尽管月球上没有这些驱动因素,但已经发现了少量的花岗岩样本,但它们的起源细节和代表的系统规模尚不清楚。在这里,我们报告了微波波长对异常热的地热源的测量结果,该热异常最好通过在富含钍的背面特征 Compton-Belkovich 下方存在一个大约 50 公里直径的花岗岩系统来解释。被动微波辐射计对几个波长深度的积分热梯度敏感。嫦娥一号和嫦娥二号微波仪器的 3-37 千兆赫天线温度使我们能够测量到约 180 毫瓦/平方米的峰值热通量,这比月球高地的平均热通量高约 20 倍。这个特征的惊人幅度和地理范围意味着存在一个类似地球的、演化程度更高的花岗岩系统,其规模比月球上甚至比 Procellarum 地区以外认为的要大。此外,这些方法具有通用性:类似地使用被动辐射测量数据可以极大地扩展我们对月球和其他行星体上的地热过程的了解。