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HII radiative transfer revealed by ionization parameter mapping

机译:电离参数映射揭示了HII辐射转移

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We develop the technique of ionization parameter mapping (IPM) to probe the optical depth of HII regions, applying our method to the Magellanic Clouds. Our results dramatically clarify the radiative transfer in these galaxies. Based on [SII], [OIII], and Ha imaging from the Magellanic Clouds Emission Line Survey, we find that the frequency of optically thin objects correlates strongly with Ha luminosity and correlates inversely with Hi column density. The aggregate escape fraction for the Lyman continuum is sufficient to ionize the diffuse, warm ionized medium, but the galactic escape fraction is dominated by the few largest HII regions. The quantitative trends are similar in both the LMC and SMC in spite of their different star formation and Hi properties.
机译:我们开发了电离参数映射(IPM)的技术,以探测HII区域的光学深度,将我们的方法应用于Magellanic云。我们的结果显着阐明了这些星系中的辐射转移。基于麦哲伦云排放线调查的[SII],[OIII]和HA成像,我们发现光学薄对象的频率与HA光度强烈地相关,并与HI柱密度相反地相关。 Lyman连续蛋白的总逃逸级分足以使弥漫性,温暖的电离培养基电离,但​​是半乳液逃逸级分由最大的HII区域主导。尽管它们不同的星形成和HI属性,LMC和SMC两者的定量趋势都是相似的。

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