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INTERFERENCE FRINGES OF SOLAR ACOUSTIC WAVES AROUND SUNSPOTS

机译:太阳黑子周围太阳声波的干涉条纹

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Solar acoustic waves are scattered by a sunspot due to the interaction between the acoustic waves and the sunspot. The sunspot, excited by the incident wave, generates the scattered wave. The scattered wave is added to the incident wave to form the total wave around the sunspot. The interference fringes between the scattered wave and the incident wave are visible in the intensity of the total wave because the coherent time of the incident wave is of the order of a wave period. The strength of the interference fringes anti-correlates with the width of temporal spectra of the incident wave. The separation between neighboring fringes increases with the incident wavelength and the sunspot size. The strength of the fringes increases with the radial order n of the incident wave from n = 0 to n = 2, and then decreases from n = 2 to n = 5. The interference fringes play a role analogous to holograms in optics. This study suggests the feasibility of using the interference fringes to reconstruct the scattered wavefields of the sunspot, although the quality of the reconstructed wavefields is sensitive to the noise and errors in the interference fringes.
机译:由于声波和黑子之间的相互作用,太阳声波被黑子散射。被入射波激发的黑子产生散射波。散射波加到入射波上,形成黑子周围的总波。散射波与入射波之间的干涉条纹在总波的强度中可见,因为入射波的相干时间约为波周期。干涉条纹的强度与入射波的时间谱的宽度反相关。相邻条纹之间的间隔随入射波长和黑子大小而增加。条纹的强度随入射波的径向阶数n从n = 0增加到n = 2,然后从n = 2减小到n =5。干涉条纹的作用类似于光学中的全息图。这项研究提出了使用干涉条纹来重建黑子散射波场的可行性,尽管重构波场的质量对干涉条纹中的噪声和误差很敏感。

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