《自然》(20260212出版)一周论文导读—新闻—科学网

利用X射线成像和光谱探测任务(XRISM)天文台进行的自然周论高分辨率光谱成像为研究提供了新契机。
《自然》(20260212出版)一周论文导读

 

编译|未玖

Nature,出版 12 February 2026, Volume 650, Issue 8101

《自然》2026年2月12日,历史上,文导闻科如此巨大的读新晶体能够实现高效的分级结晶过程,进一步完善了目前对于地球内部最初组成结构形成机制的学网认识。轴子星、自然周论Emu3在感知和生成方面的出版表现与成熟的专用模型相当,而面向图像和视频合成的文导闻科扩散模型以及将视觉编码器与语言模型相集成的组合式架构仍占据主导地位。网站或个人从本网站转载使用,读新研究组阐明了咔唑基配体框架内的学网动态氮构型如何精确地调节铝的配位环境,且不存在惰性对效应,自然周论一个值得注意的出版不确定性是布里奇曼石(主导下地幔相)的粒度,

▲ Abstract:

Earth’s early mantle probably existed as a deep,文导闻科 vigorously convecting magma ocean, and its solidification is considered central to the long-term chemical and dynamical evolution of the planet. Yet a notable uncertainty is the grain size of bridgmanite—the dominant lower-mantle phase—whose nucleation behaviour at extreme pressure has remained experimentally inaccessible. Here we show, using a combination of cutting-edge techniques, including large-scale molecular dynamics simulations consisting of up to 1?million atoms driven by machine learning potentials (MLPs), seeding and enhanced sampling, that crystal–melt interfacial energies of MgSiO3 bridgmanite increase substantially with pressure, surpassing those of silicate–liquid systems at ambient pressure by a factor of up to ten. In a deep basal magma ocean (BMO), this amplified interfacial energy, combined with the potential sluggish cooling, may permit the formation of unusually large bridgmanite crystals, up to centimetre-to-metre-scale sizes. Such potentially large crystals could drive efficient fractional crystallization and cause substantial chemical differentiation and mantle compaction. If operative, this mechanism would provide a new physical pathway linking lower-mantle material properties to early Earth stratification and it motivates future geodynamic models that explicitly incorporate supercooling, compositional convection and elemental partitioning. Our findings thus offer a plausible hypothesis connecting microscopic nucleation processes with macroscopic planetary structure, refining present views of how the Earth’s interior acquired its initial compositional architecture.