Chien Yu-Hsiang, Marzotto Enrico, Tsao Yi-Chi, Hsieh Wen-Pin
Earth System Science Program, Taiwan International Graduate Program (TIGP), Academia Sinica and National Central University, Taipei, Taiwan, ROC.
Institute of Earth Sciences, Academia Sinica, Taipei, Taiwan, ROC.
Nat Commun. 2024 Jun 18;15(1):5198. doi: 10.1038/s41467-024-49418-3.
Double seismic zones (DSZs) are a feature of some subducting slabs, where intermediate-depth earthquakes (~70-300 km) align along two separate planes. The upper seismic plane is generally attributed to dehydration embrittlement, whereas mechanisms forming the lower seismic plane are still debated. Thermal conductivity of slab minerals is expected to control the temperature evolution of subducting slabs, and therefore their seismicity. However, effects of the potential anisotropic thermal conductivity of layered serpentine minerals with crystal preferred orientation on slab's thermal evolution remain poorly understood. Here we measure the lattice thermal conductivity of antigorite, a hydrous serpentine mineral, along its crystallographic b- and c-axis at relevant high pressure-temperature conditions of subduction. We find that antigorite's thermal conductivity along the c-axis is ~3-4 folds smaller than the b-axis. Our numerical models further reveal that when the low-thermal-conductivity c-axis is aligned normal to the slab dip, antigorite's strongly anisotropic thermal conductivity enables heating at the top portion of the slab, facilitating dehydration embrittlement that causes the seismicity in the upper plane of DSZs. Potentially, the antigorite's thermal insulating effect also hinders the dissipation of frictional heat inside shear zones, promoting thermal runaway along serpentinized faults that could trigger intermediate-depth earthquakes.
双地震带(DSZs)是一些俯冲板块的一个特征,在这些板块中,中源地震(约70 - 300千米)沿着两个分开的平面排列。上部地震平面通常归因于脱水脆化,而形成下部地震平面的机制仍存在争议。板块矿物的热导率预计会控制俯冲板块的温度演化,进而控制其地震活动性。然而,具有晶体择优取向的层状蛇纹石矿物潜在的各向异性热导率对板块热演化的影响仍知之甚少。在这里,我们在俯冲相关的高压 - 温度条件下,测量了水镁石(一种含水蛇纹石矿物)沿其结晶学b轴和c轴的晶格热导率。我们发现,水镁石沿c轴的热导率比沿b轴的热导率小约3 - 4倍。我们的数值模型进一步揭示,当低热导率的c轴与板块倾角垂直排列时,水镁石强烈的各向异性热导率会使板块顶部升温,促进脱水脆化,从而导致双地震带上部平面发生地震活动。水镁石的隔热效应还可能阻碍剪切带内摩擦热的耗散,促进沿蛇纹石化断层的热失控,进而引发中源地震。