论文标题

Lyα光子通过回离层间介质的散射:I。光谱能分布

Scattering of Lyα Photons through the Reionizing Intergalactic Medium: I. Spectral Energy Distribution

论文作者

Park, Hyunbae, Kim, Hyo Jeong, Ahn, Kyungjin, Song, Hyunmi, Jung, Intae, Ocvirk, Pierre, Shapiro, Paul R., Dawoodbhoy, Taha, Sorce, Jenny G., Iliev, Ilian T.

论文摘要

在回报过程中,银河系$α$发射的一部分散布在银河系培养基(IGM)中,并作为从源延伸的巨型延伸光线显示。我们研究了如何使用这种散射的光探测早期星系及其周围IgM的性质。我们创建了一种蒙特卡洛算法来跟踪单个光子并重现以前文献中的几个测试用例。然后,我们在Codaii模拟的模拟IGM上运行代码。我们发现,如果在几个正方形的弧形上收集,散射的光可以在新兴频谱上留下可观察的烙印。散射会通过增加光子的路径长度而变红,但它也可以通过根据散射器的特殊运动对光子进行散射来使光子变得更蓝。与谐振附近发出的光子相比,在共振的远蓝色侧发射的光子在频率和空间上似乎更扩展。这为蓝向发射提供了一个区分功能,该功能不能直接来自来自源的未隔离光。 IgM的电离状态也会影响散射的光谱。当源位于一个小的HII区域时,无论初始频率如何,发射都会经历周围HI区域的更多散射,最终会更红移并在空间上扩展。这可能会导致在电源期间向高$ z $的散射光削弱。我们的结果提供了一个框架,以解释由高$ z $积分野外单位调查来衡量的散射光。

During reionization, a fraction of galactic Ly$α$ emission is scattered in the intergalactic medium (IGM) and appears as a diffuse light extending megaparsecs from the source. We investigate how to probe the properties of the early galaxies and their surrounding IGM using this scattered light. We create a Monte Carlo algorithm to track individual photons and reproduce several test cases from previous literature. Then, we run our code on the simulated IGM of the CoDaII simulation. We find that the scattered light can leave an observable imprint on the emergent spectrum if collected over several square arcminutes. Scattering can redden the emission by increasing the path lengths of photons, but it can also make the photons bluer by upscattering them according to the peculiar motion of the scatterer. The photons emitted on the far blue side of the resonance appear more extended in both frequency and space compared to those emitted near the resonance. This provides a discriminating feature for the blueward emission, which cannot be constrained from the unscattered light coming directly from the source. The ionization state of the IGM also affects the scattered light spectrum. When the source is in a small HII region, the emission goes through more scatterings in the surrounding HI region regardless of the initial frequency and ends up more redshifted and spatially extended. This can result in a weakening of the scattered light toward high $z$ during reionization. Our results provide a framework for interpreting the scattered light to be measured by high-$z$ integral-field-unit surveys.

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