Farge Gaspard, Brodsky Emily E
Department of Earth and Planetary Sciences, University of California Santa Cruz, Santa Cruz, CA, USA.
Sci Adv. 2025 May 16;11(20):eadu7173. doi: 10.1126/sciadv.adu7173. Epub 2025 May 14.
Tectonic tremor tracks the repeated slow rupture of certain major plate boundary faults. One of the most perplexing aspects about tremor is that some fault segments produce strongly periodic, spatially extensive tremor episodes, while others have more disorganized, asynchronous activity. Here, we measure the size of segments that activate synchronously during tremor episodes and the relationship to regional earthquake rate on major plate boundaries. Tremor synchronization in space seems to be limited by the activity of small, nearby crustal and intraslab earthquakes. This observation can be explained by a competition between the self-synchronization of fault segments and perturbation by regional earthquakes. Our results imply previously unrecognized interactions across subduction systems, in which earthquake activity far from the fault influences whether it breaks in small or large segments.
构造性震颤追踪某些主要板块边界断层的反复缓慢破裂。震颤最令人困惑的方面之一是,一些断层段会产生强烈周期性、空间上广泛的震颤事件,而其他断层段则有更杂乱、不同步的活动。在这里,我们测量了震颤事件期间同步激活的断层段的大小以及与主要板块边界区域地震发生率的关系。空间上的震颤同步似乎受到附近小的地壳和板内地震活动的限制。这一观察结果可以通过断层段的自同步与区域地震的扰动之间的竞争来解释。我们的结果意味着俯冲系统中以前未被认识到的相互作用,即远离断层的地震活动会影响它是小片段破裂还是大片段破裂。