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Extended High Circular Polarization in the Orion Massive Star Forming Region: Implications for the Origin of Homochirality in the Solar System

机译:猎户座大质量恒星形成区域中的扩展高圆极化:对太阳系同手性起源的影响

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摘要

We present a wide-field (∼6′ × 6′) and deep near-infrared (Ks band: 2.14 μm) circular polarization image in the Orion nebula, where massive stars and many low-mass stars are forming. Our results reveal that a high circular polarization region is spatially extended (∼0.4 pc) around the massive star-forming region, the BN/KL nebula. However, other regions, including the linearly polarized Orion bar, show no significant circular polarization. Most of the low-mass young stars do not show detectable extended structure in either linear or circular polarization, in contrast to the BN/KL nebula. If our solar system formed in a massive star-forming region and was irradiated by net circularly polarized radiation, then enantiomeric excesses could have been induced, through asymmetric photochemistry, in the parent bodies of the meteorites and subsequently delivered to Earth. These could then have played a role in the development of biological homochirality on Earth.
机译:我们在猎户星云中呈现了一个宽视场(〜6′×6′)和深近红外(Ks波段:2.14μm)的圆偏振图像,形成了大质量恒星和许多低质量恒星。我们的研究结果表明,高圆极化区域在大质量恒星形成区域BN / KL星云周围在空间上扩展了(〜0.4 pc)。但是,其他区域,包括线性极化的Orion棒,都没有显示出明显的圆极化。与BN / KL星云相反,大多数低质量的年轻恒星在线性或圆极化中均未显示出可检测到的扩展结构。如果我们的太阳系形成在一个庞大的恒星形成区域,并受到净圆偏振辐射的照射,那么可能通过不对称光化学作用在陨石的母体中诱导出对映体过量,然后将其传递到地球。这些可能在地球上生物同手性的发展中发挥了作用。

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