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首页> 外文期刊>Solar physics >Helioseismic Holography of an Artificial Submerged Sound Speed Perturbation and Implications for the Detection of Pre-emergence Signatures of Active Regions
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Helioseismic Holography of an Artificial Submerged Sound Speed Perturbation and Implications for the Detection of Pre-emergence Signatures of Active Regions

机译:人工淹没声速摄动的流变全息术及其对有源区出芽前信号的检测意义

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摘要

We use a publicly available numerical wave-propagation simulation of Hartlep et al. (Solar Phys. 268, 321, 2011) to test the ability of helioseismic holography to detect signatures of a compact, fully submerged, 5 % sound-speed perturbation placed at a depth of 50 Mm within a solar model. We find that helioseismic holography employed in a nominal “lateral-vantage” or “deep-focus” geometry employing quadrants of an annular pupil can detect and characterize the perturbation. A number of tests of the methodology, including the use of a plane-parallel approximation, the definition of travel-time shifts, the use of different phase-speed filters, and changes to the pupils, are also performed. It is found that travel-time shifts made using Gabor-wavelet fitting are essentially identical to those derived from the phase of the Fourier transform of the cross-covariance functions. The errors in travel-time shifts caused by the plane-parallel approximation can be minimized to less than a second for the depths and fields of view considered here. Based on themeasured strength of the mean travel-time signal of the perturbation, no substantial improvement in sensitivity is produced by varying the analysis procedure from the nominal methodology in conformance with expectations. The measured travel-time shifts are essentially unchanged by varying the profile of the phase-speed filter or omitting the filter entirely. Themethod remains maximally sensitive when applied with pupils that are wide quadrants, as opposed to narrower quadrants or with pupils composed of smaller arcs. We discuss the significance of these results for the recent controversy regarding suspected pre-emergence signatures of active regions.
机译:我们使用Hartlep等人的公开可用的数值波传播模拟。 (Solar Phys。268,321,2011)测试日射全息术检测在太阳模型中深度为50 Mm的紧凑,完全淹没,5%声速摄动的信号的能力。我们发现,在采用环形瞳孔象限的标称“横向优势”或“深焦点”几何结构中采用的流变全息术可以检测并表征扰动。还对该方法进行了许多测试,包括使用平面平行近似,定义行进时间偏移,使用不同的相速度滤波器以及对光瞳进行更改。发现使用Gabor小波拟合进行的行进时间偏移与从互协方差函数的傅立叶变换的相位得出的行波时间偏移基本相同。对于此处考虑的深度和视场,由平面平行近似引起的行进时间偏移的误差可以最小化到小于一秒。基于所测得的平均旅行时间信号的强度,通过改变标称方法的分析程序以达到预期效果,不会显着提高灵敏度。通过改变相速滤波器的轮廓或完全省去滤波器,可以使测得的行进时间偏移基本不变。与较窄的象限或由较小弧度组成的光瞳相反,该方法在与象限较宽的瞳孔配合使用时仍保持最大灵敏度。我们讨论这些结果对于活动区域疑似出芽前签名最近争议的重要性。

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