论文标题
通过块状子结构增强21厘米的森林信号
Boosting the 21 cm forest signals by the clumpy substructures
论文作者
论文摘要
我们研究了Subhalos对21厘米森林信号的贡献。光环可以托管子结构,包括这些小规模团块的影响可能会增强21 cm的光学深度,而有利于检测21厘米的森林信号。我们估计代表由于subhalo贡献而导致的光学深度比的增强因子,并且仅由于宿主光环(没有subhalos)而引起的。即使对于一个小主机光环的光学深度提升因子的质量为$ 10^5 m _ {\ odot} $还是可以忽略的,但subhalo的贡献可以通过$ 10^7 m _ {\ odot} $ 10^7 m _ {\ odot} $的主机光环的数量级来增强光学深度。通过在与21 cm森林信号相关的光环质量范围内积分获得的21 cm吸收线丰度可以通过由于子结构而提高到$ 10 \%$。对于21厘米的森林检测,较大的宿主光环的较大增强系数将特别感兴趣,因为较大的宿主光环对21 cm森林信号的贡献较小,因为它们的温度较高,并且比较小的宿主光环较小。因此,Subhalos可以很好地帮助较大的宿主光环对信号估计更为重要,而信号估计不考虑Subhalos,可能不会对21 cm森林信号做出明显的贡献。
We study the contribution of subhalos to the 21 cm forest signal. The halos can host the substructures and including the effects of those small scale clumps can potentially boost the 21 cm optical depth in favor of detecting the 21 cm forest signals. We estimate the boost factor representing the ratio of the optical depth due to the subhalo contribution and that due to the host halo alone (without subhalos). Even though the optical depth boost factor is negligible for a small host halo with the mass of order $10^5 M_{\odot}$, the subhalo contribution can enhance the optical depth by an order of magnitude for a host halo of order $10^7 M_{\odot}$. The resultant 21 cm absorption line abundance which is obtained by integrating over the halo mass range relevant for the 21 cm forest signal can be enhanced by up to of order $10\%$ due to the substructures. The larger boost factor for a larger host halo would be of particular interest for the 21 cm forest detection because the the contribution of the larger host halos to the 21 cm forest signals is smaller due to their higher temperature and less abundance than the smaller host halos. The subhalos hence can well help the larger host halos more important for the signal estimation which, without considering the subhalos, may not give appreciable contribution to 21 cm forest signals.