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Investigation of cosmic ray penetration with wavelet cross-correlation analysis

机译:小波互相关分析研究宇宙射线穿透

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Aims. We use Fermi -LATand Planck data to calculate the cross correlation between γ -ray signal and gas distribution in different scales in giant molecular clouds (GMCs). Then we investigate the cosmic rays (CRs) penetration in GMCs with these informations. Methods. We use the wavelet technique to decompose both the γ -ray and dust opacity maps in different scales, then we calculate the wavelet cross correlation functions in these scales. We also define wavelet response as an analog to the impulsive response in Fourier transform and calculate that in different scales down to Fermi -LATangular resolution. Results. The γ -ray maps above 2 GeV show strong correlation with the dust opacity maps, the correlation coefficient is larger than 0.9 above a scale of 0.4 degree.The derived wavelet response is uniform in different scales. Conclusions. We argue that the CR above 10 GeV can penetrate the GMC freely and the CRs distributions in the same energy range are uniform down to parsec scale.
机译:目的我们使用费米-拉特和普朗克数据来计算巨型分子云(GMCs)中不同尺度的γ射线信号与气体分布之间的互相关。然后,我们利用这些信息调查GMC中的宇宙射线(CR)穿透情况。方法。我们使用小波技术分解不同比例的γ射线和尘埃不透明度图,然后在这些比例下计算小波互相关函数。我们还将小波响应定义为傅立叶变换中的脉冲响应的模拟,并以小尺度计算到费米-LA矩形分辨率。结果。 2 GeV以上的γ射线图与尘埃不透明度图具有很强的相关性,在0.4度的尺度上相关系数大于0.9,得出的小波响应在不同尺度上是均匀的。结论我们认为,高于10 GeV的CR可以自由地穿透GMC,并且在相同能量范围内的CRs分布均等到下等位。

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