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Co-seismic Earthquake Lights: The Underlying Mechanism

机译:共同地震灯:潜在机制

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Earthquake lights (EQLs) have long been considered mysterious natural phenomena, for which no good physical explanation seemed to be available. Crucial to understanding EQLs, in particular the intense flashes of light bursting out of the ground while S waves propagate, is the presence of peroxy defects in igneous rocks, in particular in gabbroic rocks that typically fill the subvertical dykes in regions of past extensional tectonics. The peroxy defects tend to locate along grain boundaries or may even link adjacent mineral grains, making them highly susceptible to ever so slight displacements of mineral grains. Thus, the passage of an S wave will instantly activate peroxy bonds. If the number density of the stress-activated peroxy is so high that their delocalized wave functions overlap, the entire rock volume must instantly expand, supported from within by an electronic degeneration pressure. This process will be followed by a momentary dissociation of the peroxy defects, generating e ' and h center dot charge carriers, causing the volume to instantly contract again, at least partly. If an electric discharge can burst out from the top of the dyke, removing some of the charge carriers and generating an EQL, an additional volume contraction can be expected occur.
机译:地震灯(EQLS)长期以来一直被认为是神秘的自然现象,因为它似乎没有良好的物理解释。理解EQLS至关重要,特别是在S波传播的同时突出的光闪烁的强烈闪烁,是在火炭岩石中存在过氧缺陷,特别是在普通岩石中,通常在过去的延伸构造区域中填充颠覆染料的巨大岩石。过氧缺陷倾向于沿晶界定位,或者甚至可以连接相邻的矿物颗粒,使它们非常容易受到矿物质的轻微位移。因此,S波的通过将立即激活过氧键。如果应力激活的过氧的数量密度如此之高,它们的划分波浪函数重叠,则整个岩石体积必须立即扩展,从电子变性压力内支撑。然后,该过程之后将瞬间解离过氧缺陷,产生E'和H中心点电荷载流子,使得至少部分地使体积再次续签。如果放电可以从堤坝的顶部突出,则消除一些电荷载波并产生EQL,可以预期额外的体积收缩。

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