论文标题

Lyman Continuum逃生分数与光谱硬度无关

No correlation of the Lyman continuum escape fraction with spectral hardness

论文作者

Marques-Chaves, R., Schaerer, D., Amorín, R. O., Atek, H., Borthakur, S., Chisholm, J., Fernández, V., Flury, S. R., Giavalisco, M., Grazian, A., Hayes, M. J., Heckman, T. M., Henry, A., Izotov, Y. I., Jaskot, A. E., Ji, Z., McCandliss, S. R., Oey, M. S., Östlin, G., Ravindranath, S., Rutkowski, M. J., Saldana-Lopez, A., Teplitz, H., Thuan, T. X., Verhamme, A., Wang, B., Worseck, G., Xu, X.

论文摘要

在恒星形成星系中控制氢电离光子(Lyman Continum lyc;具有> 13.6 eV的能量> 13.6 eV)的生产和逃脱的性能仍然很少了解,但它们对于识别和表征对宇宙进行了重新离子的来源是关键。在这里,我们从经验探索了电离辐射的硬度与LYC泄漏之间的关系中,在最近的Hubble太空望远镜望远镜中,低于$ Z $ Star形成星系的大型样本中,低于$ z $ z $ lyman Conteruum Consume。使用Sloan数字天空调查堆栈和深度Xshooter观察,我们研究了电离光谱的硬度($ q _ {\ rm He^+}/q _ {\ rm h} $)在54.4 ev(He $^{+} $)之间lyc逃生分数跨越较宽的范围,$ f _ {\ rm esc} \ rm(lyc)\ simeq 0-90 \%$。我们发现观察到的HEII/H $β$的强度主要是由金属性变化驱动的,但与LYC泄漏无关。两者都非常强($ <f _ {\ rm Esc} \ rm(lyc)> \ simeq 0.5 $)和非诱饵($ <f _ {\ f _ {\ rm eSc} \ rm(lyc)> \ simeq 0 $)呈现出类似的观察到的heii/h $β$ qub $β$ quime s之间的相似强度0.02 $对于$ 12 + \ log({\ rm o/h})> 8.0 $和$ <8.0 $。我们的结果表明,$ q _ {\ rm he^+}/q _ {\ rm h} $与$ f _ {\ rm eSc} \ rm(lyc)$不相关,这意味着强烈的lyc emitter并没有在类似金属上表现出更硬的电离光谱。

The properties that govern the production and escape of hydrogen ionizing photons (Lyman continuum, LyC; with energies >13.6 eV) in star-forming galaxies are still poorly understood, but they are key to identifying and characterizing the sources that reionized the Universe. Here we empirically explore the relationship between the hardness of ionizing radiation and the LyC leakage in a large sample of low-$z$ star-forming galaxies from the recent Hubble Space Telescope Low-$z$ Lyman Continuum Survey. Using Sloan Digital Sky Survey stacks and deep XShooter observations, we investigate the hardness of the ionizing spectra ($Q_{\rm He^+}/Q_{\rm H}$) between 54.4 eV (He$^{+}$) and 13.6 eV (H) from the optical recombination lines HeII 4686A and H$β$ 4861A for galaxies with LyC escape fractions spanning a wide range, $f_{\rm esc} \rm (LyC) \simeq 0 - 90\%$. We find that the observed intensity of HeII/H$β$ is primarily driven by variations in the metallicity, but is not correlated with LyC leakage. Both very strong ($<f_{\rm esc} \rm (LyC)> \simeq 0.5$) and nonleakers ($ < f_{\rm esc} \rm (LyC) > \simeq 0$) present similar observed intensities of HeII/H$β$ at comparable metallicity, between $\simeq 0.01$ and $\simeq 0.02$ for $12 + \log({\rm O/H}) > 8.0$ and $<8.0$, respectively. Our results demonstrate that $Q_{\rm He^+}/Q_{\rm H}$ does not correlate with $f_{\rm esc} \rm (LyC)$, which implies that strong LyC emitters do not show harder ionizing spectra than nonleakers at similar metallicity.

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