论文标题

对南极的相对Askaryan分数的仿真研究

Simulation Study of the Relative Askaryan Fraction at the South Pole

论文作者

Paudel, Ek Narayan, Coleman, Alan, Schroeder, Frank G.

论文摘要

我们使用Coreas模拟研究了南极位置的宇宙射线阵雨的地磁和Askaryan无线电发射的比率。 Askaryan发射相对于总发射的分数取决于无线电信号在峰值幅度时的极化。我们发现,相对的Askaryan分数的径向依赖性随距淋浴轴的距离而增加 - 在Cherenkov环附近的平稳性。我们进一步发现,Askaryan的分数取决于淋浴参数,例如天顶角和最大淋浴的距离。尽管这些依赖关系与较早的研究一致,但尚未利用它们来确定最大淋浴的深度,但根据Askaryan的分数,$ x_ \ mathrm {max} $。将这些依赖项与多项式模型拟合,我们采用了一种替代方法,以使用Askaryan分数和淋浴几何形状作为输入来重建$ x_ \ mathrm {max} $。根据Askaryan分数的测量不确定性,此方法提供了$ x _ {\ Mathrm Max} $的测量,其分辨率类似于重建$ X _ {\ Mathrm Max} $的其他方法,从无线电观察值中。尽管现有的模板方法可提供较高的分辨率,但它们在计算中更为密集。因此,使用极化来提取无线电信号的Askaryan分数应被视为可观察到的附加输入,可在未来的模板拟合重建中观察到,以及用于测量$ x _ {\ mathrm max} $的其他多变量方法。

We use CoREAS simulations to study the ratio of geomagnetic and Askaryan radio emission from cosmic-ray air showers at the location of the South Pole. The fraction of Askaryan emission relative to the total emission is determined by the polarization of the radio signal at the time of its peak amplitude. We find that the relative Askaryan fraction has a radial dependence increasing with the distance from the shower axis -- with a plateau around the Cherenkov ring. We further find that the Askaryan fraction depends on shower parameters like zenith angle and the distance to the shower maximum. While these dependencies are in agreement with earlier studies, they have not yet been utilized to determine the depth of the shower maximum, $X_\mathrm{max}$, based on the Askaryan fraction. Fitting these dependencies with a polynomial model, we arrive at an alternative method to reconstruct $X_\mathrm{max}$ using a measurement of the Askaryan fraction and shower geometry as input. Depending on the measurement uncertainties of the Askaryan fraction, this method provides a measurement of $X_{\mathrm max}$ with a resolution similar to other methods of reconstructing $X_{\mathrm max}$ from radio observables. Although existing template methods give superior resolution, they are more computationally intensive. Consequently, the use of polarization to extract the Askaryan fraction of the radio signal should be considered as an additional input observable in future generations of template-fitting reconstruction and other multivariate approaches for measuring $X_{\mathrm max}$.

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