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SUNQUAKE SOURCES AND WAVE PROPAGATION

机译:日光源和波传播

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Solar flares generate sunquakes observed as ripples on the solar surface. This helioseismic response to solar flares is caused by energetic particles penetrating into the lower atmosphere. The sunquake sources are observed directly in the MDI Dopplergrams as localized high-velocity impulses. The seismic sources are typically located in are ribbons and correlate very well with sources of hard X-ray emission produced by high-energy electrons and observed from RHESSI. Detailed analysis of SOHO/MDI data showed that the structure of sunquake sources can be quite complicated in space and time. The analysis of several sunquake events in 2003-5 revealed new important features such as the strong anisotropy and ellipticity of the seismic wave fronts, and it also showed much smaller than expected distortion of the fronts when the waves propagate through sunspots. The helioseismic waves tend to have the greatest amplitude in the direction of expansion of the are ribbons. This phenomenon is somewhat similar to the fault rupture effect in earthquakes, and can be explained by theoretical calculations of sunquake waves. In some cases, the wave anisotropy can be also caused by subsurface structures and organized flows. Investigation of sunquakes provides new insight into the physics of solar flares and new means for local helioseismic diagnostics.
机译:太阳耀斑产生日出时代的日出像太阳表面上的涟漪。这种对太阳耀斑的角度响应是由渗透到较低气氛中的能量颗粒引起的。作为局部高速脉冲直接观察日光源。地震源通常位于丝带中,并且与由高能电子产生的硬X射线排放的来源非常好,并从Rhessi观察。 SOHO / MDI数据的详细分析表明,日出源的结构在空间和时间方面非常复杂。 2003 - 5中的几个日常生活事件分析揭示了新的重要特征,如地震波前的强烈各向异性和椭圆形,并且当波浪传播通过太阳黑子时,它也显示出远前的预期变形。在呈丝带的膨胀方向上倾向于具有最大的幅度。这种现象有点类似于地震中的故障破裂效果,并且可以通过日常品波的理论计算来解释。在一些情况下,波是由地下结构和有组织的流动引起的波的各向异性。日出调查为太阳能耀斑的物理和新手段提供了新的洞察力,为当地的Lire发声诊断。

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