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Corrections to the Magnitude of Cross-Correlation Functions for Dispersion of Solar Acoustic Waves

机译:太阳声波色散互相关函数幅度的校正

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摘要

The cross-correlation function is a useful tool in helioseismology. The magnitude of the cross-correlation function has been used to represent the power of wave packets. Dispersion causes a decrease in amplitude and an increase in width of wave packets. This leads to a decrease in magnitude and an increase in width of cross-correlation functions. The effect of dispersion on the magnitude of cross-correlation functions needs to be adequately corrected for in order to use the magnitude of cross-correlation functions to represent the power of wave packets. In this study, we investigate how the magnitude of cross-correlation functions changes with the number of skips owing to dispersion and the method to correct it. Our study, using simulated and observational data, indicates that the correction should be three dimensional instead of the one-dimensional correction adopted in previous studies. Using the three-dimensional correction, the measured dissipation rate in the quiet Sun is smaller than the value of previous studies.
机译:互相关函数是日震学中的有用工具。互相关函数的大小已用于表示波包的功率。色散会导致振幅降低和波包宽度增加。这导致幅度减小并且互相关函数的宽度增加。为了使用互相关函数的幅度来表示波包的功率,需要充分校正色散对互相关函数的幅度的影响。在这项研究中,我们研究了互相关函数的大小如何由于色散而随着跳数的变化而变化以及纠正它的方法。我们的研究使用模拟和观测数据表明,校正应为三维,而不是先前研究中采用的一维校正。使用三维校正,在安静的太阳下测得的耗散率小于先前研究的值。

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